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Archive for GMOs – Page 29

NSF on the Road: Days 3-6, April 19-22 , 2008

By Administrator on April 22, 2008 No Comments

Songhai, Porto Novo, Benin

Day 3, April 19, 2008
We landed today in Cotonou, the capital of Benin and the shoving began: African airports are like airports everywhere, but worse. Everyone apparently needs to be first, whether there is any point to being first or not.

I don’t need to be first and neither do General Stubblebine or Tyson, so we were pretty close to last – last off the airplane, last through customs, last to get a baggage cart, last to get our luggage.

Tyson, however, was nearly the first of our party to get vaccinated! I am strongly averse to vaccination and, to my mind, the more you study any one particular vaccine, the more you NEVER want to take that preparation. That is certainly the case with Yellow Fever Vaccine. Although many countries in Africa require proof of vaccination against this devastating disease (unnecessary, really, for people who have access to good health, Vitamin C and silver solutions) for entry. Bert, Tyson and I were able to produce exemption letters for our visas and secured our visas for Benin without any difficulty.

I had forgotten that, once you clear passport control and get your entry stamp in Benin, there are two guys in (what once were) white coats asking to see your Yellow Fever Vaccination card with a valid stamp on it. We speak English. They speak French. The possibility of communication was nill to none. Gen. Stubblebine and I tried the words for “Exemption letter” in as many ways as we could think of. We failed miserably. Finally, ready to go home, I suppose, since we were close to the last people on the plane, the two vaccine police men gave up in exasperation and waved their hands, shouting, “Go! Go!” and waving us through the door.

Tyson, however, was separated from us and was not so lucky. Before he knew what had happened, he was sitting in the Health Officer’s Office being asked in French for something (he does not speak French). He, too, kept saying that he had an exemption letter (from me, in fact!) but there seemed to be no uptake on that. He looked up from getting out the letter from his papers and saw that the Health Officer was bending over a refrigerator from which he took a vial and a syringe. “No! NO!” Tyson said and waved his letter of exemption around (probably a little wildly – I know that is the way I would have waved mine!). The man got out a yellow International Vaccination Card, stamped it and said, in perfect English, “Give me 10 Euros [ Approximately $16 US].

Tyson gave him the Euros and the man waved him out of the office WITH a vaccination card but WITHOUT the vaccination!

Once we got through the pushing and shoving at the luggage conveyor, we exited past a Beninese guard who checked every single one of our luggage tags to make sure they matched the numbers on our luggage. With all the people ahead of us, can you imagine how long that took?

Finally we exited the baggage area only to realize that the customs people were opening every suit case of every traveler. I stopped dead and looked around in utter dismay: It was already 9:45 PM and we were clearly going to be here for hours. For some reason (I have no idea what it might have been), the customs official nearest to me looked up, saw me and said, again, “Go! Go!” and we made our way out into the crowd waiting to greet their friends and relatives, associates and colleagues. There was a gentleman in a brilliant and distinctive African suit waving a very welcome “Songhai” sign. We clustered around him and he led us to the van he had brought to pick us up from Songhai.

Because our plane had not come in the night before, his two hour round trip to the airport (and the fuel which is so important in this very poor country) was wasted. He was, however, gracious and helpful nonetheless.

When we got to Songhai Center about an hour later, we were greeted in this oasis of plenty and prosperity in the middle of want and hardship by Father Godfrey Nzamjou, the man whose inspiration lives and breaths in Songhai. Although the restaurant closes at 10, he and his staff had kept it open for us (how different from Paris!) and we had an hour or so to converse and orient ourselves.

We were led to a modern building with suites and bedroom, each with a shower and private bath.

The next day, we toured the compound in the morning and saw the ingenuity, love and tenderness, yes, tenderness with which this land has been turned from a desert into a Garden, perhaps a Garden of Eden. Today, in a world where food riots are becoming more commonplace daily, the fertility which has been coaxed from the land is an urgent lesson for possibilities and a call to action. The Panama Santa Clara Project will follow the Songhai model for farming without waste or pollution. Imagine what we can do with land that is so abundantly fertile!

The heat was truly ferocious and about 11:00AM we retired indoors because anywhere outside was impossibly hot. We had more excellent food, all grown here, and waited for Fr. Godfrey to come back to us for more discussion.

Around 4 PM he arrived and said, “OK. Now you know what we have at Songhai. What are you looking for?” We spoke at depth and at length and videotaped the discussion. I think it is important that you see that and will mount it as soon as we have enough bandwidth to make that possible. It was a wonderful conversation in which we expounded on our dream and Fr. Godfrey said that this was what he had been waiting for.

We agreed that we must support each other’s work and he reaffirmed that he will, without a doubt, come to Panama to set up the design for the zero emissions farm complete with bio-digester and bio-gas for fuel independence as well as power independence. Fr. Godfrey is the proud “papa” of the largest bio-gas facility in Africa. Cheap, easy and clean, bio-gas can heat our water, run our generators, pump our liquids, grind our grains, etc. And we will learn from a master!

But Songhai is much more than just a fuel independent system. Please take a moment when the tape is mounted to watch it and capture the shared dream of this world leader whose Center is a recognized United National Center Excellence in Africa.

After more chat and dinner (outstanding, of course), Tyson, General Bert and I set to working through the immense number of details for our community in Panama, the Santa Clara ARC, with the clear understanding that what we are doing now is highly preliminary since the community will ultimately make these decisions for itself.

That took us late into the night and we fell asleep quite exhausted. Oh, by the way, there was still no internet connection.

Day 4, April 20, 2008

Today was our “BIG DAY” at Songhai Center. Father Godfrey is immensely busy and he agreed to give us most of a full day to discuss our plans and possible working together in considerable detail – that is a large part of why we came.

We began with breakfast at 8 AM in the restaurant which serves about 200 meals per day to visitors. All food served here is grown here or on other Songhai Centers so everything is not only fresh, but free of pesticides and all other types of synthetic, chemical additives. It is wonderful knowing that every bite was grown by the labor of people who love the land and understand how to nurture it so it can nurture them. We are very eager to replicate that loving relationship between our food and our selves as we come to create the farm and farm school which will be a core activity of the Santa Clara ARC.

We took a tour of the facility including the foundry, the kiln, the fields, the food processing areas, the store, the animal sheds, the fish pond, the composing area, the bio gas facility, etc., etc. All of this amazing integrated farming has been created here in the total absence of fertile soil. Fr. Godfrey told us that he had worked 15 years of the 20 that he has been here to create this astonishing fertility. We start in Panama with astonishingly fertile land!

Songhai’s rich productivity daily feeds 1500 people (300 workers and their families, which average 5 people), about 100 students who are in training, typically for 18 months, and the 200 guests who come to the African and Western restaurants. I think it is an easy leap to conclude that our fertile farm will be producing much more than we members of the community, guests and health center clients can consume so it is reasonable to expect that one center of profit for the Santa Clara ARC will be the distribution and sale of outstanding food!

Because of the intense heat, everything stops for several hours during the middle of the day. Everything, that is, except lunch. We wove our way from shade spot to shade spot to the restaurant for lunch and much talk about what we have seen. Tyson is a black smith/iron worker so he was particularly fascinated by learning what he needs to know to make the bio gas apparatus and by the machines which Songhai designs and makes on site.

Later, Fr. Godfrey came to where we are staying, where there is, mercifully, air conditioning and we started to talk together. I asked him how many other groups like ours had come to set up sister facilities as we are doing.

Tyson had the foresight to set up a video camera to film this discussion and it was a great decision. The video is not compatible with my computer so we have to download it to a disc and upload it that way. Clearly we do not have the opportunity here in Songhai, but we will do so shortly.

The upshot of the discussion was that we are what Fr. Godfrey has been waiting for as a partner community! We will bring our experience in order to work toward sister health centers in Parakou, Benin and Santa Clara, Panama. He will use his experience to make Santa Clara a full zero emissions facility farming center and school.

Meanwhile, we had missed our appointment with Col. Mikode, the Codex Contact Point for Benin because we arrived more than a full day late. This delay winds up having significant impact on Codex. Read on.

Dinner, then more intense discussion and off to bed.

Day 5, April 21, 2008
Today we started the day with meeting for about an hour during breakfast with Fr. Godfrey. By the way, Songhai makes its own delicious yogurt. After about an hour, he had other things to do before heading off to Nigeria to meet with government officials there to replicate the Songhai model there. There are also two people from separate projects doing similar things in Nigeria. One is, like Gen. Stubblebine, a General.

Sometime later, Col. Mikode and Pascal, the head of the Benin Horticultural Research Station came to see us. They had good news and bad news for us.

The good news was that they had prepared a budget and program for the agricultural project using magnets to treat the water used to grow plants. Preliminary results suggest significant increases in crop yield, nutrient density, plant vigor and significant decreases in water utilization. Given the rapidly worsening shortage of food in the word due to climate change and diversion of food crop acreage to biofuels (which cost at least 29% more energy than they produce so the bargain is a very, very bad one for the planet, its carbon balance and its people) the ability to increase yield and nutritional value, while eliminating all requirements for pesticides and other chemicals, is a very important asset. Equally important, perhaps, is the reduction in water usage to get stronger and more vigorous plants.

I had been perplexed by the fact that nothing was happening with the agricultural magnet project – nothing. I had designed a simple (and, I hope, elegant) design which would test the hypotheses of increased crop yield, increased nutrient density, increased plant vigor and decreased water usage but they require actually being carried out to show anything. I could not understand it when I got an email saying that the project was postponed until they got the money to carry it out.

When Pascal presented me with the document outlining the costs, I nearly fell off my chair. Instead of 6 test beds, there were 33. Instead of raised beds edged with scrap lumber of corrugated tin or sand bags, they were asking for 4.2 metric tons of concrete, thousands of bricks, etc.

It was clear that we needed to talk!

The next interesting meeting was a telephonic one with Dr. Koura, who was supposed to serve as the Beninese delegate to the Codex Committee On Food Labeling next week in Ottawa. She had informed the Codex Contact Point, Col. Mikode, that she would not be funded by the WHO Trust Fund at 11 PM on Saturday evening but that email was not read until 9 AM Monday morning (yesterday). That means that Benin will not have a voice at this important Codex meeting where the initiative begun by the African nations at the meeting in Ghana in February this year to demand labeling of Genetically Modified Organisms was pushed forward so impressively.

I asked our Natural Solutions Foundation Trustees if we should not host (i.e., pay for) the Beninese delegate to make sure that there was a strong voice from this country at the Codex meeting. We quickly agreed and the next thing we needed to do was convince Dr. Kora and the Beninese government that this was a good idea.

Col. Mikode had no problem with it and said that if Dr. Koura was willing, so was he.

Day 6, April 22, 2008

Early this morning Tyson, General Stubblebine and I set off with a translator to visit Pascal at the Horticultural Research Station to find out what had gone wrong with the Agricultural Magnet project and retrieve 20 pairs for use here at Songhai.

Because we had a translator with us this time, as opposed to the last time we talked with Pascal, we discovered what the problem was: Language difficulties led to Pascal believeing that since we had identified 11 potential crops for the experiment, he would need to conduct the experiment with 3 beds of each crop. The undertaking would be huge and he wanted to build structures to make it possible. I explained that we wanted to choose 2 crops from the 11 and Pascal heaved a huge sigh of relief. We walked out to the fields to see where the projects would take place and Pascal has already applied the magnets to a buried rigid water pipe in preparation for our visit. Once we got the miscommunication out of the way, it became clear that a real project using amaranth and tomatoes would be carried out and carried out well.

We are eager to get those results and the results from the Songhai application. It is our hope that the results are robust enough that we can begin to change agricultural practices in many places in the world. It is essential, the Natural Solutions Foundation believes, to reclaim food production, eliminating pesticides and other dangerous chemicals, and making ti clear that the best crop yield is produced by natural means, not by GM crops. Dr. Koura, on the other hand, when we finally did get together this afternoon, was not so sure it was a good idea. She had “turned off” the process by telling her bosses that she was not, after all, going and was adamantly reluctant to tell them that she could now go under our sponsorship.

We tried every which-a-way to Sunday to persuade her, but she was not movable. We got ready to write to the US and UN Ambassadors from Benin to see if they could provide a person to attend the meetings (it is much easier to get a Canadian visa from the US) when we got a piece of very bad news, indeed.

This information makes us think that we are seeing a pattern: The Ugandan Codex delegate had taken the ball into his own hands and arranged an African strategy session on GM labeling the day before the CCFL meeting was to begin. He is a credentialed delegate from a member nation. Canada denied him a visa twice.

The strategy of the power brokers is clear: fix it so the opposition cannot show up and then claim that the process is legitimate. That is pretty much the same as arresting the opposition and claiming that your election was democratic (or counting the votes on a programmable electronic voting machine with a predetermined outcome, for that matter!)The Codex process is far from legitimate. Our Trustees have just spent an extended period on the phone working out our next strategic moves to deal with this new tactic.

More to follow.

Yours in health and freedom,
Dr. Rima
Rima E. Laibow, MD
Medical Director
Natural Solutions Foundation
www.HealthFreedomUSA.org
www.GlobalHealthFreedom.org
www.Organics4U.org

Categories : About Codex Alimentarius, Blog / Vlog, CODEX Consequences, CODEX Industries, GMOs, Organics, Promising Developments
Tags : agriculture, Codex, Food Labeling, food production, GM, GMO, International Decade of Nutrition, magnets

GM Files: Japan Bans US Long Grain Rice Imports Due to GM Contamination

By Administrator on April 22, 2008 No Comments

Japan ends U.S. long-grain rice imports
Aug 21 2006
Source: Associated Press

TOKYO Japan has suspended imports of U.S. long-grain rice following a positive test for trace amounts of a genetically modified strain not approved for human consumption, a news report said Sunday.

Japan’s Health Ministry imposed the suspension on Saturday after being informed by U.S. federal officials that trace amounts of the unapproved strain had been discovered in commercially available long-grain rice, the Asahi newspaper said.

The genetically engineered rice was detected by Bayer CropScience AG. The German company then notified U.S. officials. The strain is not approved for sale in the United States, but two other strains of rice with the same genetically engineered protein are.

Health Ministry officials were unavailable for comment Sunday.

Categories : Blog / Vlog, GMOs

GM FILES: South African Corn Taints the Continent

By Administrator on April 18, 2008 No Comments

The Natural Solutions Foundation, the leading Global Health Freedom organization, is proud to present this information to you. We protect your right to know about – and to use – natural ways to maintain and regain your health, no matter where in the world you live. Among your freedoms is the right to clean, unadulterated food free of genetic manipulation, pesticides, heavy metals or other contaminants and access to herbs, supplements, frequency devices and other means as therapies that may benefit or to protect your well-being without drugs and other dangerous interventions, if you choose.

For more information on our global programs, including the International Decade of Nutrition, and our US based ones, please visit us at www.HealthFreedomUSA.org and www.GlobalHealthFreedom.org and join the free email list for the Health Freedom eAlerts to keep you in the loop, informed and active defending your right to make your own decisions about your health and wellbeing!
Our activities are supported 100% by your tax deductible donations. Please give generously (https://staging.drrimatruthreports.com/index.php?page_id=189) to the Natural Solutions Foundation. Thank you for your support.
Feel free to disseminate this information as widely as possible with full attribution.
Yours in health and freedom,
Dr. Rima

Rima E. Laibow, MD
Medical Director
Natural Solutions Foundation
www.HealthFreedomUSA.org
www.GlobalHealthFreedom.org
www.organics4U.org

South Africa exports non-GM maize while the GM crap is dumped on the unsuspecting population and contained in more than 135,000 food products.

http://www.liberationafrique.org/spip.php?article2126

First GMO seed scandal in Africa: South Africa contaminates the continent

29 February 2008
African Centre for Biosafety – http://www.biosafetyafrica.net/

Seed maize from South Africa, claiming to be pure, has been found to be contaminated with genetically modified organisms (GMOs). The South African branch of US seed giant Pioneer Hi-Bred recently exported contaminated maize seeds to unsuspecting Kenyan farmers.

The maize seeds are contaminated with a genetically engineered variety-MON810- belonging to Monsanto that has not been approved in Kenya. GM maize MON 810 contains a novel gene that is considered unsafe and banned in several European countries.

The contamination of Kenyan seeds comes on the eve of a UN meeting that is tasked with developing internationally liability rules for genetically engineered products.

The contamination was detected by Greenpeace International, who, in cooperation with a coalition of several environmental and farmers’ organisations in Kenya, commissioned tests of 19 different seed varieties that were bought in seed stores from key maize producing areas across the country. The tests, conducted by an independent European laboratory, revealed that Pioneer’s seed maize PHB 30V53, sold in the Eldoret region of Kenya, is contaminated with MON 810 maize, a variant that is genetically engineered to be insect resistant.

“We call on all African national regulatory agencies to ban any import of seeds from companies that do not guarantee clean seeds that are free from genetic contamination,” insists Mariam Mayet director of African Centre for Biosafety (ACB), “Kenya now needs a strong biosafety bill that puts farmers’ and consumer rights first, and we need mandatory international rules that ensure that polluters must pay for genetic contamination.”

Some blame for this seed contamination scandal must also lie at the door of the South African government who has allowed the export of unapproved maize in the first place, she contends. “Maize is the most important staple crop in Kenya. Farmers and consumers in all countries, rich and poor, have the right to untainted, safe seeds and food.”

Note:

From 12-19 March, in Cartagena, Colombia, governments will continue to negotiate international rules on liability for damages caused by GMOs. These negotiations take place under the Cartagena Protocol on Biosafety. Some developed countries such as the United States, Japan and New Zealand are opposing a global agreement on GMO liability. The continuing threats to developing country agriculture posed by GMO contamination, as evidenced by this latest contamination scandal, demonstrate the need for legally binding, global rules that ensure that polluters pay if anything goes wrong with genetically modified organisms (GMOs).

In February 2008 the French government decided to ban the cultivation of Monsanto’s maize MON 810. The French ban is based on several environmental concerns, such as the impossibility to prevent the dissemination of GM maize into the environment and the possibility of toxic effects on non target organisms, such as earthworms. Besides France five other EU member states (Austria, Greece, Hungary, Italy and Poland) have banned the commercial growing of GM maize MON 810 on the basis of environmental and health concerns .

Categories : Blog / Vlog, GMOs, Medical Hazards

GM Files: Monsanto’s War on Food and Freedom

By Administrator on April 18, 2008 No Comments

The Natural Solutions Foundation, the leading Global Health Freedom organization, is proud to present this information to you. We protect your right to know about – and to use – natural ways to maintain and regain your health, no matter where in the world you live. Among your freedoms is the right to clean, unadulterated food free of genetic manipulation, pesticides, heavy metals or other contaminants and access to herbs, supplements, frequency devices and other means as therapies that may benefit or to protect your well-being without drugs and other dangerous interventions, if you choose.

For more information on our global programs, including the International Decade of Nutrition, and our US based ones, please visit us at www.HealthFreedomUSA.org and www.GlobalHealthFreedom.org and join the free email list for the Health Freedom eAlerts to keep you in the loop, informed and active defending your right to make your own decisions about your health and wellbeing!
Our activities are supported 100% by your tax deductible donations. Please give generously (https://staging.drrimatruthreports.com/index.php?page_id=189) to the Natural Solutions Foundation. Thank you for your support.
Feel free to disseminate this information as widely as possible with full attribution.
Yours in health and freedom,
Dr. Rima

Rima E. Laibow, MD
Medical Director
Natural Solutions Foundation
www.HealthFreedomUSA.org
www.GlobalHealthFreedom.org
www.organics4U.orgMonsanto’s Harvest of Fear
Monsanto already dominates America’s food chain with its genetically modified seeds. Now it has targeted milk production. Just as frightening as the corporation’s tactics–ruthless legal battles against small farmers–is its decades-long history of toxic contamination.
by Donald L. Barlett and James B. Steele May 2008

http://www.vanityfair.com/images/politics/2008/05/poar03_monsanto0805.jpg

Gary Rinehart clearly remembers the summer day in 2002 when the stranger walked in and issued his threat. Rinehart was behind the counter of the Square Deal, his “old-time country store,” as he calls it, on the fading town square of Eagleville, Missouri, a tiny farm community 100 miles north of Kansas City.

The Square Deal is a fixture in Eagleville, a place where farmers and townspeople can go for lightbulbs, greeting cards, hunting gear, ice cream, aspirin, and dozens of other small items without having to drive to a big-box store in Bethany, the county seat, 15 miles down Interstate 35.

Everyone knows Rinehart, who was born and raised in the area and runs one of Eagleville’s few surviving businesses. The stranger came up to the counter and asked for him by name.

“Well, that’s me,” said Rinehart.

As Rinehart would recall, the man began verbally attacking him, saying he had proof that Rinehart had planted Monsanto’s genetically modified (G.M.) soybeans in violation of the company’s patent. Better come clean and settle with Monsanto, Rinehart says the man told him—or face the consequences.

Rinehart was incredulous, listening to the words as puzzled customers and employees looked on. Like many others in rural America, Rinehart knew of Monsanto’s fierce reputation for enforcing its patents and suing anyone who allegedly violated them. But Rinehart wasn’t a farmer. He wasn’t a seed dealer. He hadn’t planted any seeds or sold any seeds. He owned a small—a really small—country store in a town of 350 people. He was angry that somebody could just barge into the store and embarrass him in front of everyone. “It made me and my business look bad,” he says. Rinehart says he told the intruder, “You got the wrong guy.”

When the stranger persisted, Rinehart showed him the door. On the way out the man kept making threats. Rinehart says he can’t remember the exact words, but they were to the effect of: “Monsanto is big. You can’t win. We will get you. You will pay.”

Scenes like this are playing out in many parts of rural America these days as Monsanto goes after farmers, farmers’ co-ops, seed dealers—anyone it suspects may have infringed its patents of genetically modified seeds. As interviews and reams of court documents reveal, Monsanto relies on a shadowy army of private investigators and agents in the American heartland to strike fear into farm country. They fan out into fields and farm towns, where they secretly videotape and photograph farmers, store owners, and co-ops; infiltrate community meetings; and gather information from informants about farming activities. Farmers say that some Monsanto agents pretend to be surveyors. Others confront farmers on their land and try to pressure them to sign papers giving Monsanto access to their private records. Farmers call them the “seed police” and use words such as “Gestapo” and “Mafia” to describe their tactics.

When asked about these practices, Monsanto declined to comment specifically, other than to say that the company is simply protecting its patents. “Monsanto spends more than $2 million a day in research to identify, test, develop and bring to market innovative new seeds and technologies that benefit farmers,” Monsanto spokesman Darren Wallis wrote in an e-mailed letter to Vanity Fair. “One tool in protecting this investment is patenting our discoveries and, if necessary, legally defending those patents against those who might choose to infringe upon them.” Wallis said that, while the vast majority of farmers and seed dealers follow the licensing agreements, “a tiny fraction” do not, and that Monsanto is obligated to those who do abide by its rules to enforce its patent rights on those who “reap the benefits of the technology without paying for its use.” He said only a small number of cases ever go to trial.

Some compare Monsanto’s hard-line approach to Microsoft’s zealous efforts to protect its software from pirates. At least with Microsoft the buyer of a program can use it over and over again. But farmers who buy Monsanto’s seeds can’t even do that.
The Control of Nature

For centuries—millennia—farmers have saved seeds from season to season: they planted in the spring, harvested in the fall, then reclaimed and cleaned the seeds over the winter for re-planting the next spring. Monsanto has turned this ancient practice on its head.

Monsanto developed G.M. seeds that would resist its own herbicide, Roundup, offering farmers a convenient way to spray fields with weed killer without affecting crops. Monsanto then patented the seeds. For nearly all of its history the United States Patent and Trademark Office had refused to grant patents on seeds, viewing them as life-forms with too many variables to be patented. “It’s not like describing a widget,” says Joseph Mendelson III, the legal director of the Center for Food Safety, which has tracked Monsanto’s activities in rural America for years.

Indeed not. But in 1980 the U.S. Supreme Court, in a five-to-four decision, turned seeds into widgets, laying the groundwork for a handful of corporations to begin taking control of the world’s food supply. In its decision, the court extended patent law to cover “a live human-made microorganism.” In this case, the organism wasn’t even a seed. Rather, it was a Pseudomonas bacterium developed by a General Electric scientist to clean up oil spills. But the precedent was set, and Monsanto took advantage of it. Since the 1980s, Monsanto has become the world leader in genetic modification of seeds and has won 674 biotechnology patents, more than any other company, according to U.S. Department of Agriculture data.
Monsanto’s Harvest of Fear
Monsanto already dominates America’s food chain with its genetically modified seeds. Now it has targeted milk production. Just as frightening as the corporation’s tactics–ruthless legal battles against small farmers–is its decades-long history of toxic contamination.
by Donald L. Barlett and James B. Steele May 2008

http://www.vanityfair.com/images/politics/2008/05/poar03_monsanto0805.jpg

Farmers who buy Monsanto’s patented Roundup Ready seeds are required to sign an agreement promising not to save the seed produced after each harvest for re-planting, or to sell the seed to other farmers. This means that farmers must buy new seed every year. Those increased sales, coupled with ballooning sales of its Roundup weed killer, have been a bonanza for Monsanto.

This radical departure from age-old practice has created turmoil in farm country. Some farmers don’t fully understand that they aren’t supposed to save Monsanto’s seeds for next year’s planting. Others do, but ignore the stipulation rather than throw away a perfectly usable product. Still others say that they don’t use Monsanto’s genetically modified seeds, but seeds have been blown into their fields by wind or deposited by birds. It’s certainly easy for G.M. seeds to get mixed in with traditional varieties when seeds are cleaned by commercial dealers for re-planting. The seeds look identical; only a laboratory analysis can show the difference. Even if a farmer doesn’t buy G.M. seeds and doesn’t want them on his land, it’s a safe bet he’ll get a visit from Monsanto’s seed police if crops grown from G.M. seeds are discovered in his fields.

Most Americans know Monsanto because of what it sells to put on our lawns— the ubiquitous weed killer Roundup. What they may not know is that the company now profoundly influences—and one day may virtually control—what we put on our tables. For most of its history Monsanto was a chemical giant, producing some of the most toxic substances ever created, residues from which have left us with some of the most polluted sites on earth. Yet in a little more than a decade, the company has sought to shed its polluted past and morph into something much different and more far-reaching—an “agricultural company” dedicated to making the world “a better place for future generations.” Still, more than one Web log claims to see similarities between Monsanto and the fictional company “U-North” in the movie Michael Clayton, an agribusiness giant accused in a multibillion-dollar lawsuit of selling an herbicide that causes cancer. http://www.vanityfair.com/images/politics/2008/05/poar01_monsanto0805.jpg

Monsanto’s genetically modified seeds have transformed the company and are radically altering global agriculture. So far, the company has produced G.M. seeds for soybeans, corn, canola, and cotton. Many more products have been developed or are in the pipeline, including seeds for sugar beets and alfalfa. The company is also seeking to extend its reach into milk production by marketing an artificial growth hormone for cows that increases their output, and it is taking aggressive steps to put those who don’t want to use growth hormone at a commercial disadvantage.

Even as the company is pushing its G.M. agenda, Monsanto is buying up conventional-seed companies. In 2005, Monsanto paid $1.4 billion for Seminis, which controlled 40 percent of the U.S. market for lettuce, tomatoes, and other vegetable and fruit seeds. Two weeks later it announced the acquisition of the country’s third-largest cottonseed company, Emergent Genetics, for $300 million. It’s estimated that Monsanto seeds now account for 90 percent of the U.S. production of soybeans, which are used in food products beyond counting. Monsanto’s acquisitions have fueled explosive growth, transforming the St. Louis–based corporation into the largest seed company in the world.

In Iraq, the groundwork has been laid to protect the patents of Monsanto and other G.M.-seed companies. One of L. Paul Bremer’s last acts as head of the Coalition Provisional Authority was an order stipulating that “farmers shall be prohibited from re-using seeds of protected varieties.” Monsanto has said that it has no interest in doing business in Iraq, but should the company change its mind, the American-style law is in place.

To be sure, more and more agricultural corporations and individual farmers are using Monsanto’s G.M. seeds. As recently as 1980, no genetically modified crops were grown in the U.S. In 2007, the total was 142 million acres planted. Worldwide, the figure was 282 million acres. Many farmers believe that G.M. seeds increase crop yields and save money. Another reason for their attraction is convenience. By using Roundup Ready soybean seeds, a farmer can spend less time tending to his fields. With Monsanto seeds, a farmer plants his crop, then treats it later with Roundup to kill weeds. That takes the place of labor-intensive weed control and plowing.

Monsanto portrays its move into G.M. seeds as a giant leap for mankind. But out in the American countryside, Monsanto’s no-holds-barred tactics have made it feared and loathed. Like it or not, farmers say, they have fewer and fewer choices in buying seeds.

And controlling the seeds is not some abstraction. Whoever provides the world’s seeds controls the world’s food supply.
Under Surveillance

After Monsanto’s investigator confronted Gary Rinehart, Monsanto filed a federal lawsuit alleging that Rinehart “knowingly, intentionally, and willfully” planted seeds “in violation of Monsanto’s patent rights.” The company’s complaint made it sound as if Monsanto had Rinehart dead to rights:

During the 2002 growing season, Investigator Jeffery Moore, through surveillance of Mr. Rinehart’s farm facility and farming operations, observed Defendant planting brown bag soybean seed. Mr. Moore observed the Defendant take the brown bag soybeans to a field, which was subsequently loaded into a grain drill and planted. Mr. Moore located two empty bags in the ditch in the public road right-of-way beside one of the fields planted by Rinehart, which contained some soybeans. Mr. Moore collected a small amount of soybeans left in the bags which Defendant had tossed into the public right-of way. These samples tested positive for Monsanto’s Roundup Ready technology.

Faced with a federal lawsuit, Rinehart had to hire a lawyer. Monsanto eventually realized that “Investigator Jeffery Moore” had targeted the wrong man, and dropped the suit. Rinehart later learned that the company had been secretly investigating farmers in his area. Rinehart never heard from Monsanto again: no letter of apology, no public concession that the company had made a terrible mistake, no offer to pay his attorney’s fees. “I don’t know how they get away with it,” he says. “If I tried to do something like that it would be bad news. I felt like I was in another country.”

Gary Rinehart is actually one of Monsanto’s luckier targets. Ever since commercial introduction of its G.M. seeds, in 1996, Monsanto has launched thousands of investigations and filed lawsuits against hundreds of farmers and seed dealers. In a 2007 report, the Center for Food Safety, in Washington, D.C., documented 112 such lawsuits, in 27 states.

Even more significant, in the Center’s opinion, are the numbers of farmers who settle because they don’t have the money or the time to fight Monsanto. “The number of cases filed is only the tip of the iceberg,” says Bill Freese, the Center’s science-policy analyst. Freese says he has been told of many cases in which Monsanto investigators showed up at a farmer’s house or confronted him in his fields, claiming he had violated the technology agreement and demanding to see his records. According to Freese, investigators will say, “Monsanto knows that you are saving Roundup Ready seeds, and if you don’t sign these information-release forms, Monsanto is going to come after you and take your farm or take you for all you’re worth.” Investigators will sometimes show a farmer a photo of himself coming out of a store, to let him know he is being followed.

Lawyers who have represented farmers sued by Monsanto say that intimidating actions like these are commonplace. Most give in and pay Monsanto some amount in damages; those who resist face the full force of Monsanto’s legal wrath.
Scorched-Earth Tactics

Pilot Grove, Missouri, population 750, sits in rolling farmland 150 miles west of St. Louis. The town has a grocery store, a bank, a bar, a nursing home, a funeral parlor, and a few other small businesses. There are no stoplights, but the town doesn’t need any. The little traffic it has comes from trucks on their way to and from the grain elevator on the edge of town. The elevator is owned by a local co-op, the Pilot Grove Cooperative Elevator, which buys soybeans and corn from farmers in the fall, then ships out the grain over the winter. The co-op has seven full-time employees and four computers.

In the fall of 2006, Monsanto trained its legal guns on Pilot Grove; ever since, its farmers have been drawn into a costly, disruptive legal battle against an opponent with limitless resources. Neither Pilot Grove nor Monsanto will discuss the case, but it is possible to piece together much of the story from documents filed as part of the litigation.

Monsanto began investigating soybean farmers in and around Pilot Grove several years ago. There is no indication as to what sparked the probe, but Monsanto periodically investigates farmers in soybean-growing regions such as this one in central Missouri. The company has a staff devoted to enforcing patents and litigating against farmers. To gather leads, the company maintains an 800 number and encourages farmers to inform on other farmers they think may be engaging in “seed piracy.”

Once Pilot Grove had been targeted, Monsanto sent private investigators into the area. Over a period of months, Monsanto’s investigators surreptitiously followed the co-op’s employees and customers and videotaped them in fields and going about other activities. At least 17 such surveillance videos were made, according to court records. The investigative work was outsourced to a St. Louis agency, McDowell & Associates. It was a McDowell investigator who erroneously fingered Gary Rinehart. In Pilot Grove, at least 11 McDowell investigators have worked the case, and Monsanto makes no bones about the extent of this effort: “Surveillance was conducted throughout the year by various investigators in the field,” according to court records. McDowell, like Monsanto, will not comment on the case.

Not long after investigators showed up in Pilot Grove, Monsanto subpoenaed the co-op’s records concerning seed and herbicide purchases and seed-cleaning operations. The co-op provided more than 800 pages of documents pertaining to dozens of farmers. Monsanto sued two farmers and negotiated settlements with more than 25 others it accused of seed piracy. But Monsanto’s legal assault had only begun. Although the co-op had provided voluminous records, Monsanto then sued it in federal court for patent infringement. Monsanto contended that by cleaning seeds—a service which it had provided for decades—the co-op was inducing farmers to violate Monsanto’s patents. In effect, Monsanto wanted the co-op to police its own customers.

In the majority of cases where Monsanto sues, or threatens to sue, farmers settle before going to trial. The cost and stress of litigating against a global corporation are just too great. But Pilot Grove wouldn’t cave—and ever since, Monsanto has been turning up the heat. The more the co-op has resisted, the more legal firepower Monsanto has aimed at it. Pilot Grove’s lawyer, Steven H. Schwartz, described Monsanto in a court filing as pursuing a “scorched earth tactic,” intent on “trying to drive the co-op into the ground.”

Even after Pilot Grove turned over thousands more pages of sales records going back five years, and covering virtually every one of its farmer customers, Monsanto wanted more—the right to inspect the co-op’s hard drives. When the co-op offered to provide an electronic version of any record, Monsanto demanded hands-on access to Pilot Grove’s in-house computers.

Monsanto next petitioned to make potential damages punitive—tripling the amount that Pilot Grove might have to pay if found guilty. After a judge denied that request, Monsanto expanded the scope of the pre-trial investigation by seeking to quadruple the number of depositions. “Monsanto is doing its best to make this case so expensive to defend that the Co-op will have no choice but to relent,” Pilot Grove’s lawyer said in a court filing.

With Pilot Grove still holding out for a trial, Monsanto now subpoenaed the records of more than 100 of the co-op’s customers. In a “You are Commanded … ” notice, the farmers were ordered to gather up five years of invoices, receipts, and all other papers relating to their soybean and herbicide purchases, and to have the documents delivered to a law office in St. Louis. Monsanto gave them two weeks to comply.

Whether Pilot Grove can continue to wage its legal battle remains to be seen. Whatever the outcome, the case shows why Monsanto is so detested in farm country, even by those who buy its products. “I don’t know of a company that chooses to sue its own customer base,” says Joseph Mendelson, of the Center for Food Safety. “It’s a very bizarre business strategy.” But it’s one that Monsanto manages to get away with, because increasingly it’s the dominant vendor in town.
Chemicals? What Chemicals?

The Monsanto Company has never been one of America’s friendliest corporate citizens. Given Monsanto’s current dominance in the field of bioengineering, it’s worth looking at the company’s own DNA. The future of the company may lie in seeds, but the seeds of the company lie in chemicals. Communities around the world are still reaping the environmental consequences of Monsanto’s origins.

Monsanto was founded in 1901 by John Francis Queeny, a tough, cigar-smoking Irishman with a sixth-grade education. A buyer for a wholesale drug company, Queeny had an idea. But like a lot of employees with ideas, he found that his boss wouldn’t listen to him. So he went into business for himself on the side. Queeny was convinced there was money to be made manufacturing a substance called saccharin, an artificial sweetener then imported from Germany. He took $1,500 of his savings, borrowed another $3,500, and set up shop in a dingy warehouse near the St. Louis waterfront. With borrowed equipment and secondhand machines, he began producing saccharin for the U.S. market. He called the company the Monsanto Chemical Works, Monsanto being his wife’s maiden name.

The German cartel that controlled the market for saccharin wasn’t pleased, and cut the price from $4.50 to $1 a pound to try to force Queeny out of business. The young company faced other challenges. Questions arose about the safety of saccharin, and the U.S. Department of Agriculture even tried to ban it. Fortunately for Queeny, he wasn’t up against opponents as aggressive and litigious as the Monsanto of today. His persistence and the loyalty of one steady customer kept the company afloat. That steady customer was a new company in Georgia named Coca-Cola.

Monsanto added more and more products—vanillin, caffeine, and drugs used as sedatives and laxatives. In 1917, Monsanto began making aspirin, and soon became the largest maker worldwide. During World War I, cut off from imported European chemicals, Monsanto was forced to manufacture its own, and its position as a leading force in the chemical industry was assured.

After Queeny was diagnosed with cancer, in the late 1920s, his only son, Edgar, became president. Where the father had been a classic entrepreneur, Edgar Monsanto Queeny was an empire builder with a grand vision. It was Edgar—shrewd, daring, and intuitive (“He can see around the next corner,” his secretary once said)—who built Monsanto into a global powerhouse. Under Edgar Queeny and his successors, Monsanto extended its reach into a phenomenal number of products: plastics, resins, rubber goods, fuel additives, artificial caffeine, industrial fluids, vinyl siding, dishwasher detergent, anti-freeze, fertilizers, herbicides, pesticides. Its safety glass protects the U.S. Constitution and the Mona Lisa. Its synthetic fibers are the basis of Astroturf.

During the 1970s, the company shifted more and more resources into biotechnology. In 1981 it created a molecular-biology group for research in plant genetics. The next year, Monsanto scientists hit gold: they became the first to genetically modify a plant cell. “It will now be possible to introduce virtually any gene into plant cells with the ultimate goal of improving crop productivity,” said Ernest Jaworski, director of Monsanto’s Biological Sciences Program.

Over the next few years, scientists working mainly in the company’s vast new Life Sciences Research Center, 25 miles west of St. Louis, developed one genetically modified product after another—cotton, soybeans, corn, canola. From the start, G.M. seeds were controversial with the public as well as with some farmers and European consumers. Monsanto has sought to portray G.M. seeds as a panacea, a way to alleviate poverty and feed the hungry. Robert Shapiro, Monsanto’s president during the 1990s, once called G.M. seeds “the single most successful introduction of technology in the history of agriculture, including the plow.”

By the late 1990s, Monsanto, having rebranded itself into a “life sciences” company, had spun off its chemical and fibers operations into a new company called Solutia. After an additional reorganization, Monsanto re-incorporated in 2002 and officially declared itself an “agricultural company.”

In its company literature, Monsanto now refers to itself disingenuously as a “relatively new company” whose primary goal is helping “farmers around the world in their mission to feed, clothe, and fuel” a growing planet. In its list of corporate milestones, all but a handful are from the recent era. As for the company’s early history, the decades when it grew into an industrial powerhouse now held potentially responsible for more than 50 Environmental Protection Agency Superfund sites—none of that is mentioned. It’s as though the original Monsanto, the company that long had the word “chemical” as part of its name, never existed. One of the benefits of doing this, as the company does not point out, was to channel the bulk of the growing backlog of chemical lawsuits and liabilities onto Solutia, keeping the Monsanto brand pure.

But Monsanto’s past, especially its environmental legacy, is very much with us. For many years Monsanto produced two of the most toxic substances ever known— polychlorinated biphenyls, better known as PCBs, and dioxin. Monsanto no longer produces either, but the places where it did are still struggling with the aftermath, and probably always will be.
“Systemic Intoxication”

Twelve miles downriver from Charleston, West Virginia, is the town of Nitro, where Monsanto operated a chemical plant from 1929 to 1995. In 1948 the plant began to make a powerful herbicide known as 2,4,5-T, called “weed bug” by the workers. A by-product of the process was the creation of a chemical that would later be known as dioxin.

The name dioxin refers to a group of highly toxic chemicals that have been linked to heart disease, liver disease, human reproductive disorders, and developmental problems. Even in small amounts, dioxin persists in the environment and accumulates in the body. In 1997 the International Agency for Research on Cancer, a branch of the World Health Organization, classified the most powerful form of dioxin as a substance that causes cancer in humans. In 2001 the U.S. government listed the chemical as a “known human carcinogen.”On March 8, 1949, a massive explosion rocked Monsanto’s Nitro plant when a pressure valve blew on a container cooking up a batch of herbicide. The noise from the release was a scream so loud that it drowned out the emergency steam whistle for five minutes. A plume of vapor and white smoke drifted across the plant and out over town.Residue from the explosion coated the interior of the building and those inside with what workers described as “a fine black powder.” Many felt their skin prickle and were told to scrub down.

Within days, workers experienced skin eruptions. Many were soon diagnosed with chloracne, a condition similar to common acne but more severe, longer lasting, and potentially disfiguring. Others felt intense pains in their legs, chest, and trunk. A confidential medical report at the time said the explosion “caused a systemic intoxication in the workers involving most major organ systems.” Doctors who examined four of the most seriously injured men detected a strong odor coming from them when they were all together in a closed room. “We believe these men are excreting a foreign chemical through their skins,” the confidential report to Monsanto noted. Court records indicate that 226 plant workers became ill.

According to court documents that have surfaced in a West Virginia court case, Monsanto downplayed the impact, stating that the contaminant affecting workers was “fairly slow acting” and caused “only an irritation of the skin.”

In the meantime, the Nitro plant continued to produce herbicides, rubber products, and other chemicals. In the 1960s, the factory manufactured Agent Orange, the powerful herbicide which the U.S. military used to defoliate jungles during the Vietnam War, and which later was the focus of lawsuits by veterans contending that they had been harmed by exposure. As with Monsanto’s older herbicides, the manufacturing of Agent Orange created dioxin as a by-product.

As for the Nitro plant’s waste, some was burned in incinerators, some dumped in landfills or storm drains, some allowed to run into streams. As Stuart Calwell, a lawyer who has represented both workers and residents in Nitro, put it, “Dioxin went wherever the product went, down the sewer, shipped in bags, and when the waste was burned, out in the air.”

In 1981 several former Nitro employees filed lawsuits in federal court, charging that Monsanto had knowingly exposed them to chemicals that caused long-term health problems, including cancer and heart disease. They alleged that Monsanto knew that many chemicals used at Nitro were potentially harmful, but had kept that information from them. On the eve of a trial, in 1988, Monsanto agreed to settle most of the cases by making a single lump payment of $1.5 million. Monsanto also agreed to drop its claim to collect $305,000 in court costs from six retired Monsanto workers who had unsuccessfully charged in another lawsuit that Monsanto had recklessly exposed them to dioxin. Monsanto had attached liens to the retirees’ homes to guarantee collection of the debt.

Monsanto stopped producing dioxin in Nitro in 1969, but the toxic chemical can still be found well beyond the Nitro plant site. Repeated studies have found elevated levels of dioxin in nearby rivers, streams, and fish. Residents have sued to seek damages from Monsanto and Solutia. Earlier this year, a West Virginia judge merged those lawsuits into a class-action suit. A Monsanto spokesman said, “We believe the allegations are without merit and we’ll defend ourselves vigorously.” The suit will no doubt take years to play out. Time is one thing that Monsanto always has, and that the plaintiffs usually don’t.
Poisoned Lawns

Five hundred miles to the south, the people of Anniston, Alabama, know all about what the people of Nitro are going through. They’ve been there. In fact, you could say, they’re still there.

From 1929 to 1971, Monsanto’s Anniston works produced PCBs as industrial coolants and insulating fluids for transformers and other electrical equipment. One of the wonder chemicals of the 20th century, PCBs were exceptionally versatile and fire-resistant, and became central to many American industries as lubricants, hydraulic fluids, and sealants. But PCBs are toxic. A member of a family of chemicals that mimic hormones, PCBs have been linked to damage in the liver and in the neurological, immune, endocrine, and reproductive systems. The Environmental Protection Agency (E.P.A.) and the Agency for Toxic Substances and Disease Registry, part of the Department of Health and Human Services, now classify PCBs as “probable carcinogens.”

Today, 37 years after PCB production ceased in Anniston, and after tons of contaminated soil have been removed to try to reclaim the site, the area around the old Monsanto plant remains one of the most polluted spots in the U.S.

People in Anniston find themselves in this fix today largely because of the way Monsanto disposed of PCB waste for decades. Excess PCBs were dumped in a nearby open-pit landfill or allowed to flow off the property with storm water. Some waste was poured directly into Snow Creek, which runs alongside the plant and empties into a larger stream, Choccolocco Creek. PCBs also turned up in private lawns after the company invited Anniston residents to use soil from the plant for their lawns, according to The Anniston Star.

So for decades the people of Anniston breathed air, planted gardens, drank from wells, fished in rivers, and swam in creeks contaminated with PCBs—without knowing anything about the danger. It wasn’t until the 1990s—20 years after Monsanto stopped making PCBs in Anniston—that widespread public awareness of the problem there took hold.

Studies by health authorities consistently found elevated levels of PCBs in houses, yards, streams, fields, fish, and other wildlife—and in people. In 2003, Monsanto and Solutia entered into a consent decree with the E.P.A. to clean up Anniston. Scores of houses and small businesses were to be razed, tons of contaminated soil dug up and carted off, and streambeds scooped of toxic residue. The cleanup is under way, and it will take years, but some doubt it will ever be completed—the job is massive. To settle residents’ claims, Monsanto has also paid $550 million to 21,000 Anniston residents exposed to PCBs, but many of them continue to live with PCBs in their bodies. Once PCB is absorbed into human tissue, there it forever remains.

Monsanto shut down PCB production in Anniston in 1971, and the company ended all its American PCB operations in 1977. Also in 1977, Monsanto closed a PCB plant in Wales. In recent years, residents near the village of Groesfaen, in southern Wales, have noticed vile odors emanating from an old quarry outside the village. As it turns out, Monsanto had dumped thousands of tons of waste from its nearby PCB plant into the quarry. British authorities are struggling to decide what to do with what they have now identified as among the most contaminated places in Britain.
“No Cause for Public Alarm”

What had Monsanto known—or what should it have known—about the potential dangers of the chemicals it was manufacturing? There’s considerable documentation lurking in court records from many lawsuits indicating that Monsanto knew quite a lot. Let’s look just at the example of PCBs.

The evidence that Monsanto refused to face questions about their toxicity is quite clear. In 1956 the company tried to sell the navy a hydraulic fluid for its submarines called Pydraul 150, which contained PCBs. Monsanto supplied the navy with test results for the product. But the navy decided to run its own tests. Afterward, navy officials informed Monsanto that they wouldn’t be buying the product. “Applications of Pydraul 150 caused death in all of the rabbits tested” and indicated “definite liver damage,” navy officials told Monsanto, according to an internal Monsanto memo divulged in the course of a court proceeding. “No matter how we discussed the situation,” complained Monsanto’s medical director, R. Emmet Kelly, “it was impossible to change their thinking that Pydraul 150 is just too toxic for use in submarines.”

Ten years later, a biologist conducting studies for Monsanto in streams near the Anniston plant got quick results when he submerged his test fish. As he reported to Monsanto, according to The Washington Post, “All 25 fish lost equilibrium and turned on their sides in 10 seconds and all were dead in 3½ minutes.”

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When the Food and Drug Administration (F.D.A.) turned up high levels of PCBs in fish near the Anniston plant in 1970, the company swung into action to limit the P.R. damage. An internal memo entitled “confidential—f.y.i. and destroy” from Monsanto official Paul B. Hodges reviewed steps under way to limit disclosure of the information. One element of the strategy was to get public officials to fight Monsanto’s battle: “Joe Crockett, Secretary of the Alabama Water Improvement Commission, will try to handle the problem quietly without release of the information to the public at this time,” according to the memo.

Despite Monsanto’s efforts, the information did get out, but the company was able to blunt its impact. Monsanto’s Anniston plant manager “convinced” a reporter for The Anniston Star that there was really nothing to worry about, and an internal memo from Monsanto’s headquarters in St. Louis summarized the story that subsequently appeared in the newspaper: “Quoting both plant management and the Alabama Water Improvement Commission, the feature emphasized the PCB problem was relatively new, was being solved by Monsanto and, at this point, was no cause for public alarm.”

In truth, there was enormous cause for public alarm. But that harm was done by the “Original Monsanto Company,” not “Today’s Monsanto Company” (the words and the distinction are Monsanto’s). The Monsanto of today says that it can be trusted—that its biotech crops are “as wholesome, nutritious and safe as conventional crops,” and that milk from cows injected with its artificial growth hormone is the same as, and as safe as, milk from any other cow.
The Milk Wars

Jeff Kleinpeter takes very good care of his dairy cows. In the winter he turns on heaters to warm their barns. In the summer, fans blow gentle breezes to cool them, and on especially hot days, a fine mist floats down to take the edge off Louisiana’s heat. The dairy has gone “to the ultimate end of the earth for cow comfort,” says Kleinpeter, a fourth-generation dairy farmer in Baton Rouge. He says visitors marvel at what he does: “I’ve had many of them say, ‘When I die, I want to come back as a Kleinpeter cow.’ ”

Monsanto would like to change the way Jeff Kleinpeter and his family do business. Specifically, Monsanto doesn’t like the label on Kleinpeter Dairy’s milk cartons: “From Cows Not Treated with rBGH.” To consumers, that means the milk comes from cows that were not given artificial bovine growth hormone, a supplement developed by Monsanto that can be injected into dairy cows to increase their milk output.

No one knows what effect, if any, the hormone has on milk or the people who drink it. Studies have not detected any difference in the quality of milk produced by cows that receive rBGH, or rBST, a term by which it is also known. But Jeff Kleinpeter—like millions of consumers—wants no part of rBGH. Whatever its effect on humans, if any, Kleinpeter feels certain it’s harmful to cows because it speeds up their metabolism and increases the chances that they’ll contract a painful illness that can shorten their lives. “It’s like putting a Volkswagen car in with the Indianapolis 500 racers,” he says. “You gotta keep the pedal to the metal the whole way through, and pretty soon that poor little Volkswagen engine’s going to burn up.”

Kleinpeter Dairy has never used Monsanto’s artificial hormone, and the dairy requires other dairy farmers from whom it buys milk to attest that they don’t use it, either. At the suggestion of a marketing consultant, the dairy began advertising its milk as coming from rBGH-free cows in 2005, and the label began appearing on Kleinpeter milk cartons and in company literature, including a new Web site of Kleinpeter products that proclaims, “We treat our cows with love … not rBGH.”

The dairy’s sales soared. For Kleinpeter, it was simply a matter of giving consumers more information about their product.

But giving consumers that information has stirred the ire of Monsanto. The company contends that advertising by Kleinpeter and other dairies touting their “no rBGH” milk reflects adversely on Monsanto’s product. In a letter to the Federal Trade Commission in February 2007, Monsanto said that, notwithstanding the overwhelming evidence that there is no difference in the milk from cows treated with its product, “milk processors persist in claiming on their labels and in advertisements that the use of rBST is somehow harmful, either to cows or to the people who consume milk from rBST-supplemented cows.”

Monsanto called on the commission to investigate what it called the “deceptive advertising and labeling practices” of milk processors such as Kleinpeter, accusing them of misleading consumers “by falsely claiming that there are health and safety risks associated with milk from rBST-supplemented cows.” As noted, Kleinpeter does not make any such claims—he simply states that his milk comes from cows not injected with rBGH.

Monsanto’s attempt to get the F.T.C. to force dairies to change their advertising was just one more step in the corporation’s efforts to extend its reach into agriculture. After years of scientific debate and public controversy, the F.D.A. in 1993 approved commercial use of rBST, basing its decision in part on studies submitted by Monsanto. That decision allowed the company to market the artificial hormone. The effect of the hormone is to increase milk production, not exactly something the nation needed then—or needs now. The U.S. was actually awash in milk, with the government buying up the surplus to prevent a collapse in prices.

Monsanto began selling the supplement in 1994 under the name Posilac. Monsanto acknowledges that the possible side effects of rBST for cows include lameness, disorders of the uterus, increased body temperature, digestive problems, and birthing difficulties. Veterinary drug reports note that “cows injected with Posilac are at an increased risk for mastitis,” an udder infection in which bacteria and pus may be pumped out with the milk. What’s the effect on humans? The F.D.A. has consistently said that the milk produced by cows that receive rBGH is the same as milk from cows that aren’t injected: “The public can be confident that milk and meat from BST-treated cows is safe to consume.” Nevertheless, some scientists are concerned by the lack of long-term studies to test the additive’s impact, especially on children. A Wisconsin geneticist, William von Meyer, observed that when rBGH was approved the longest study on which the F.D.A.’s approval was based covered only a 90-day laboratory test with small animals. “But people drink milk for a lifetime,” he noted. Canada and the European Union have never approved the commercial sale of the artificial hormone. Today, nearly 15 years after the F.D.A. approved rBGH, there have still been no long-term studies “to determine the safety of milk from cows that receive artificial growth hormone,” says Michael Hansen, senior staff scientist for Consumers Union. Not only have there been no studies, he adds, but the data that does exist all comes from Monsanto. “There is no scientific consensus about the safety,” he says.

However F.D.A. approval came about, Monsanto has long been wired into Washington. Michael R. Taylor was a staff attorney and executive assistant to the F.D.A. commissioner before joining a law firm in Washington in 1981, where he worked to secure F.D.A. approval of Monsanto’s artificial growth hormone before returning to the F.D.A. as deputy commissioner in 1991. Dr. Michael A. Friedman, formerly the F.D.A.’s deputy commissioner for operations, joined Monsanto in 1999 as a senior vice president. Linda J. Fisher was an assistant administrator at the E.P.A. when she left the agency in 1993. She became a vice president of Monsanto, from 1995 to 2000, only to return to the E.P.A. as deputy administrator the next year. William D. Ruckelshaus, former E.P.A. administrator, and Mickey Kantor, former U.S. trade representative, each served on Monsanto’s board after leaving government. Supreme Court justice Clarence Thomas was an attorney in Monsanto’s corporate-law department in the 1970s. He wrote the Supreme Court opinion in a crucial G.M.-seed patent-rights case in 2001 that benefited Monsanto and all G.M.-seed companies. Donald Rumsfeld never served on the board or held any office at Monsanto, but Monsanto must occupy a soft spot in the heart of the former defense secretary. Rumsfeld was chairman and C.E.O. of the pharmaceutical maker G. D. Searle & Co. when Monsanto acquired Searle in 1985, after Searle had experienced difficulty in finding a buyer. Rumsfeld’s stock and options in Searle were valued at $12 million at the time of the sale.

From the beginning some consumers have consistently been hesitant to drink milk from cows treated with artificial hormones. This is one reason Monsanto has waged so many battles with dairies and regulators over the wording of labels on milk cartons. It has sued at least two dairies and one co-op over labeling.

Critics of the artificial hormone have pushed for mandatory labeling on all milk products, but the F.D.A. has resisted and even taken action against some dairies that labeled their milk “BST-free.” Since BST is a natural hormone found in all cows, including those not injected with Monsanto’s artificial version, the F.D.A. argued that no dairy could claim that its milk is BST-free. The F.D.A. later issued guidelines allowing dairies to use labels saying their milk comes from “non-supplemented cows,” as long as the carton has a disclaimer saying that the artificial supplement does not in any way change the milk. So the milk cartons from Kleinpeter Dairy, for example, carry a label on the front stating that the milk is from cows not treated with rBGH, and the rear panel says, “Government studies have shown no significant difference between milk derived from rBGH-treated and non-rBGH-treated cows.” That’s not good enough for Monsanto.
The Next Battleground

As more and more dairies have chosen to advertise their milk as “No rBGH,” Monsanto has gone on the offensive. Its attempt to force the F.T.C. to look into what Monsanto called “deceptive practices” by dairies trying to distance themselves from the company’s artificial hormone was the most recent national salvo. But after reviewing Monsanto’s claims, the F.T.C.’s Division of Advertising Practices decided in August 2007 that a “formal investigation and enforcement action is not warranted at this time.” The agency found some instances where dairies had made “unfounded health and safety claims,” but these were mostly on Web sites, not on milk cartons. And the F.T.C. determined that the dairies Monsanto had singled out all carried disclaimers that the F.D.A. had found no significant differences in milk from cows treated with the artificial hormone.

Blocked at the federal level, Monsanto is pushing for action by the states. In the fall of 2007, Pennsylvania’s agriculture secretary, Dennis Wolff, issued an edict prohibiting dairies from stamping milk containers with labels stating their products were made without the use of the artificial hormone. Wolff said such a label implies that competitors’ milk is not safe, and noted that non-supplemented milk comes at an unjustified higher price, arguments that Monsanto has frequently made. The ban was to take effect February 1, 2008.

Wolff’s action created a firestorm in Pennsylvania (and beyond) from angry consumers. So intense was the outpouring of e-mails, letters, and calls that Pennsylvania governor Edward Rendell stepped in and reversed his agriculture secretary, saying, “The public has a right to complete information about how the milk they buy is produced.”

On this issue, the tide may be shifting against Monsanto. Organic dairy products, which don’t involve rBGH, are soaring in popularity. Supermarket chains such as Kroger, Publix, and Safeway are embracing them. Some other companies have turned away from rBGH products, including Starbucks, which has banned all milk products from cows treated with rBGH. Although Monsanto once claimed that an estimated 30 percent of the nation’s dairy cows were injected with rBST, it’s widely believed that today the number is much lower.

But don’t count Monsanto out. Efforts similar to the one in Pennsylvania have been launched in other states, including New Jersey, Ohio, Indiana, Kansas, Utah, and Missouri. A Monsanto-backed group called afact—American Farmers for the Advancement and Conservation of Technology—has been spearheading efforts in many of these states. afact describes itself as a “producer organization” that decries “questionable labeling tactics and activism” by marketers who have convinced some consumers to “shy away from foods using new technology.” afact reportedly uses the same St. Louis public-relations firm, Osborn & Barr, employed by Monsanto. An Osborn & Barr spokesman told The Kansas City Star that the company was doing work for afact on a pro bono basis.

Even if Monsanto’s efforts to secure across-the-board labeling changes should fall short, there’s nothing to stop state agriculture departments from restricting labeling on a dairy-by-dairy basis. Beyond that, Monsanto also has allies whose foot soldiers will almost certainly keep up the pressure on dairies that don’t use Monsanto’s artificial hormone. Jeff Kleinpeter knows about them, too.

He got a call one day from the man who prints the labels for his milk cartons, asking if he had seen the attack on Kleinpeter Dairy that had been posted on the Internet. Kleinpeter went online to a site called StopLabelingLies, which claims to “help consumers by publicizing examples of false and misleading food and other product labels.” There, sure enough, Kleinpeter and other dairies that didn’t use Monsanto’s product were being accused of making misleading claims to sell their milk.

There was no address or phone number on the Web site, only a list of groups that apparently contribute to the site and whose issues range from disparaging organic farming to downplaying the impact of global warming. “They were criticizing people like me for doing what we had a right to do, had gone through a government agency to do,” says Kleinpeter. “We never could get to the bottom of that Web site to get that corrected.”

As it turns out, the Web site counts among its contributors Steven Milloy, the “junk science” commentator for FoxNews.com and operator of junkscience.com, which claims to debunk “faulty scientific data and analysis.” It may come as no surprise that earlier in his career, Milloy, who calls himself the “junkman,” was a registered lobbyist for Monsanto.

Donald L. Barlett and James B. Steele are Vanity Fair contributing editors.

Categories : Blog / Vlog, GMOs, Medical Hazards

GM Files:COMPANY RESEARCH ON GENETICALLY MODIFIED FOODS IS RIGGED

By Administrator on April 18, 2008 No Comments

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COMPANY RESEARCH ON GENETICALLY MODIFIED FOODS IS RIGGED

In 2004, four advocates of genetically modified (GM) foods published a study in the British Food Journal that was sure to boost their cause [1]. According to the peer-reviewed paper, when shoppers in a Canadian farm store were confronted with an informed and unbiased choice between GM corn and non-GM corn, most purchased the GM variety. This finding flew in the face of worldwide consumer resistance to GM foods, which had shut markets in Europe, Japan, and elsewhere. It also challenged studies that showed that the more information on genetically modified organisms (GMOs) consumers have, the less they trust them.[2] The study, which was funded by the biotech-industry front group, Council for Biotechnology Information and the industry’s trade association, the Crop Protection Institute of Canada (now Croplife Canada), was given the Journal’s prestigious Award for Excellence for the Most Outstanding Paper of 2004 and has been cited often by biotech advocates.

Stuart Laidlaw, a reporter from Canada’s Toronto Star, visited the farm store several times during the study and described the scenario in his book Secret Ingredients. Far from offering unbiased choices, key elements appeared rigged to favor GM corn purchases. The consumer education fact sheets were entirely pro-GMO, and Doug Powell, the lead researcher, enthusiastically demonstrated to Laidlaw how he could convince shoppers to buy the GM varieties. He confronted a farmer who had already purchased non-GM corn. After pitching his case for GMOs, Powell proudly had the farmer tell Laidlaw that he had changed his opinion and would buy GM corn in his next shopping trip.

Powell’s interference with shoppers’ “unbiased” choices was nothing compared to the effect of the signs placed over the corn bins. The sign above the non-GM corn read, “Would you eat wormy sweet corn?” It further listed the chemicals that were sprayed during the season. By contrast, the sign above the GM corn stated, “Here’s What Went into Producing Quality Sweet Corn.” It is no wonder that 60% of shoppers avoided the “wormy corn.” In fact, it may be a testament to people’s distrust of GMOs that 40% still went for the “wormy” option.

Powell and his colleagues did not mention the controversial signage in their study. They claimed that the corn bins in the farm store were “fully labelled”—either “genetically engineered Bt sweet corn” or “Regular sweet-corn.”

When Laidlaw’s book came out, however, Powell’s “wormy” sign was featured in a photograph,[3] exposing what was later described by Cambridge University’s Dr. Richard Jennings as “flagrant fraud.” Jennings, who is a leading researcher on scientific ethics, says, “It was a sin of omission by failing to divulge information which quite clearly should have been disclosed.”[4]

Jennings is among several scientists and outraged citizens that say the paper should have been withdrawn, but the Journal refused. Instead, it published a criticism of the methods by Canadian geneticist Joe Cummins, and allowed Powell to respond with a lengthy reply.[5]

In his defence, Powell claimed that his signs merely used the language of consumers and was “not intended to manipulate consumer purchasing patterns.” He also claimed that the “wormy” corn sign was only there for the first week of the trial and was then replaced by other educational messages. But eye witnesses and photographs demonstrate the presence of the sign long after Powell’s suggested date of replacement.[6]

This incident illustrates how so-called scientific papers can be manipulated to force conclusions favorable to authors or funders and how peer-reviewed journals may be complicit. While the subject of this particular study provided ammunition in the battle to deny choice to consumers in North America, there is similar “cooked” research in the more critical area of GMO safety assessments.

SECRET, INADEQUATE, AND FLAWED
THE UNPUBLISHED INDUSTRY STUDIES SUBMITTED TO REGULATORS ARE TYPICALLY KEPT SECRET BASED ON THE CLAIM THAT IT IS “CONFIDENTIAL BUSINESS INFORMATION.” THE ROYAL SOCIETY OF CANADA IS ONE OF MANY ORGANIZATIONS THAT CONDEMN THIS PRACTICE. THEY WROTE:
IN THE JUDGMENT OF THE EXPERT PANEL, THE MORE REGULATORY AGENCIES LIMIT FREE ACCESS TO THE DATA UPON WHICH THEIR DECISIONS ARE BASED, THE MORE COMPROMISED BECOMES THE CLAIM THAT THE REGULATORY PROCESS IS ‘SCIENCE BASED.’ THIS IS DUE TO A SIMPLE BUT WELL-UNDERSTOOD REQUIREMENT OF THE SCIENTIFIC METHOD ITSELF—THAT IT BE AN OPEN, COMPLETELY TRANSPARENT ENTERPRISE IN WHICH ANY AND ALL ASPECTS OF SCIENTIFIC RESEARCH ARE OPEN TO FULL REVIEW BY SCIENTIFIC PEERS. PEER REVIEW AND INDEPENDENT CORROBORATION OF RESEARCH FINDINGS ARE AXIOMS OF THE SCIENTIFIC METHOD, AND PART OF THE VERY MEANING OF THE OBJECTIVITY AND NEUTRALITY OF SCIENCE.”[7]

Whenever private submissions are made public through lawsuits or Freedom of Information Act Requests, it becomes clear why companies benefit from secrecy. The quality of their research is often miserable, incompetent, and unacceptable for peer-review. In 2000, for example, after the potentially allergenic StarLink corn was discovered in the food supply, Aventis CropScience presented wholly inadequate safety data to the EPA’s scientific advisory panel. One frustrated panel member, Dean Metcalfe, MD,—the government’s top allergist—said during a hearing, “Most of us review for a lot of journals. And if this were presented for publication in the journals that I review for, it would be sent back to the authors with all of these questions. It would be rejected.”[8]

Submissions to the US Food and Drug Administraion (FDA) may be worse than in other countries, since the agency doesn’t actually require any data. Their policy—overseen by Monsanto’s former attorney who later became the company’s vice president—says that biotech companies can determine if their own foods are safe. Anything submitted is voluntary and, according to former Environmental Protection Agency scientist Doug Gurian-Sherman, “often lack[s] sufficient detail, such as necessary statistical analyses needed for an adequate safety evaluation.” Using Freedom of Information Requests, Gurian-Sherman analyzed more than a fourth of the data summaries (14 of 53) of GM crops reviewed by the FDA. He says, “Our evaluation found that the biotechnology companies provide inadequate data to ensure their products are safe.”[9]

UNSCIENTIFIC ASSUMPTIONS ARE THE BASIS OF APPROVALS

“Most or all of the conclusions of food safety for individual GM crops are based on inferences and assumptions, rather than on actual testing,” says Professor E. Ann Clark, who analyzed submissions to Canadian regulators. For example, rather than actually testing to see if the amino acid sequence produced by their inserted gene is correct, “the standard practice,” according to research analyst William Freese, “is to sequence just 5 to 25 amino acids, even if the protein has more than 600 in total. If the short sample matches what is expected, they assume that the rest are also fine. If they are wrong, however, a rearranged protein could be quite dangerous.”

Monsanto’s submission to Australian regulators on their high lysine GM corn provides several examples of optimistic assumptions used in place of science. The GM protein produced in the corn is also found in soil. The company claimed that since people consume small residues of soil on fruits and vegetables, the protein has a history of safe consumption. An independent calculation by the Centre for Integrated Research on Biosafety (INBI), however, reveals the weakness of this argument. Based on the amount of GM corn protein an average US citizen would consume (if all their corn were Monsanto’s variety), “for equivalent exposure” of the protein from soil “people would have to eat between 80-800 million (males) or 60-700 million (females) kilograms of soil each day, or nearly as much as 10,000kg/second 24 hours a day seven days a week.” INBI estimated that the normal exposure to the protein from soil residues was actually “about 30 billion-4 trillion times less than exposure through [high lysine] corn.”[10]

In addition, certain nutritional components of this GM variety (i.e. protein content, total dietary fiber, acid detergent fiber, and neutral detergent fiber) lie far outside the normal range for corn. Instead of comparing their corn to normal controls, which would reveal this disparity, Monsanto compared it to obscure corn varieties that were also substantially outside the normal range on precisely these values.

Epidemiologist Judy Carman points out that GM “experiments used some very unusual animal models for human health, such as chickens, cows and trout. Some of the measurements taken from these animals are also unusual measures of human health, such as abdominal fat pad weight, total de-boned breast meat yield, and milk production.” In her examination of the full range of submittals to authorities in Australia and New Zealand, she says that there was no proper evaluation of “biochemistry, immunology, tissue pathology, and gut, liver and kidney function.”[11] Writing on behalf of the Public Health Association of Australia, Carman says, “The effects of feeding people high concentrations of the new protein over tens of years cannot be determined by feeding 20 mice a single oral gavage of a given high concentration of the protein and taking very basic data for 13-14 days . . .The acute toxicity testing proposed as adequate would simply not pick up cancer, teratology [birth defects] or the long-tem effects of nutrient deficiencies or increases in anti-nutrients.”[12]

THE SCIENCE OF RIGGING STUDIES

When independent researchers published a study in July 1999 showing that GM soy contains 12%-14% less cancer-fighting phytoestrogens, Monsanto responded with its own study, concluding that soy’s phytoestrogen levels vary too much to even carry out a statistical analysis. Researchers failed to disclose, however, that they had instructed the laboratory to use an obsolete method of detection—one that had been prone to highly variable results.[13]
WHEN AVENTIS PREPARED SAMPLES TO SEE IF THE POTENTIAL ALLERGEN IN STARLINK CORN REMAINED INTACT AFTER COOKING, INSTEAD OF USING THE STANDARD 30-MINUTE TREATMENT, THEY HEATED CORN FOR TWO HOURS.
TO SHOW THAT PASTEURIZATION DESTROYED BOVINE GROWTH HORMONE IN MILK FROM COWS TREATED WITH RBGH, THEY PASTEURIZED THE MILK 120 TIMES LONGER THAN NORMAL. UNABLE TO DESTROY MORE THAN 19%, THEY THEN SPIKED THE MILK WITH A HUGE AMOUNT OF THE HORMONE AND REPEATED THE LONG PASTEURIZATION, DESTROYING 90%. (THE FDA REPORTED THAT PASTEURIZATION DESTROYS 90% OF THE HORMONE.)
TO DEMONSTRATE THAT INJECTIONS OF RBGH DID NOT INTERFERE WITH COW’S FERTILITY, MONSANTO APPARENTLY ADDED COWS TO THE STUDY THAT WERE PREGNANT PRIOR TO INJECTION.

AND IN ORDER TO PROVE THAT THE PROTEIN FROM THEIR GM CROPS BREAKS DOWN QUICKLY DURING SIMULATED DIGESTION, BIOTECH COMPANIES USED THOUSANDS OF TIMES THE AMOUNT OF DIGESTIVE ENZYMES AND A MUCH STRONGER ACID COMPARED TO THAT RECOMMENDED BY THE WORLD HEALTH ORGANIZATION.

METHODS USED TO HIDE PROBLEMS ARE VARIED AND PLENTIFUL. FOR EXAMPLE, RESEARCHERS:

USE HIGHLY VARIABLE ANIMAL STARTING WEIGHTS TO HINDER DETECTION OF FOOD-RELATED CHANGES

KEEP FEEDING STUDIES SHORT TO MISS LONG-TERM IMPACTS

TEST EFFECTS OF ROUNDUP READY SOYBEANS THAT HAVE NOT BEEN SPRAYED WITH ROUNDUP

AVOID FEEDING ANIMALS THE ACTUAL GM CROP, BUT GIVE THEM INSTEAD A SINGLE DOSE OF THE GM PROTEIN THAT WAS PRODUCED INSIDE GM BACTERIA

USE TOO FEW SUBJECTS TO DERIVE STATISTICALLY SIGNIFICANT RESULTS

USE POOR STATISTICAL METHODS OR SIMPLY LEAVE OUT ESSENTIAL METHODS, DATA, OR STATISTICS

USE RIGGED OR IRRELEVANT CONTROL GROUPS, AND
EMPLOY INSENSITIVE OR OBSOLETE EVALUATION TECHNIQUES

Monsanto’s 1996 Journal of Nutrition study[14],[15] provides plenty of examples of scientific transgressions. Roundup Ready soybeans are engineered to withstand the normally fatal effects of Monsanto’s herbicide called Roundup. Monsanto scientists published a feeding study that purported to test their soybeans’ effect on rats, catfish, chickens, and cows. The study has been used often by the industry as validation for safety claims. According to Dr. Arpad Pusztai, however, “It was obvious that the study had been designed to avoid finding any problems. Everybody in our consortium knew this.” Pusztai was commissioned at the time by the UK government to develop rigorous testing protocols on GM foods—protocols that were never implemented. Pusztai, who had published several studies in that same nutrition journal, said the Monsanto paper was “not really up to the normal journal standards.” Pusztai says that if he had been asked to referee the paper for publication, “it would never have passed.” He’s confident that even his graduate assistants would have taken the study apart in short order. Some of the flaws include:

*
Researchers tested GM soy on mature animals, not young ones. Young animals use protein to build their muscles, tissues, and organs. Problems with GM food could therefore show up in organ and body weight. But adult animals use the protein for tissue renewal and energy. “With a nutritional study on mature animals,” says Pusztai, “you would never see any difference in organ weights even if the food turned out to be anti-nutritional. The animals would have to be emaciated or poisoned to show anything.”
*
Even if there were an organ development problem, the study wouldn’t have picked it up since the researchers didn’t weigh the organs.
*
In one of the trials, researchers substituted only one tenth of the natural protein with GM soy protein. In two others, they diluted their GM soy six- and twelve-fold. [16] Scientists Ian Pryme of Norway and Rolf Lembcke of Denmark wrote, the “level of the GM soy was too low, and would probably ensure that any possible undesirable GM effects did not occur.”
*
Pryme and Lembcke, who published a paper in Nutrition and Health that analyzed all peer-reviewed feeding studies on GM foods as of 2003, also pointed out that the percentage of protein in the feed used in the Roundup Ready study was “artificially too high.” This “would almost certainly mask, or at least effectively reduce, any possible effect of the [GM soy].” They said it was “highly likely that all GM effects would have been diluted out.” [17]
*
Proper compositional studies filter out effects of weather or geography by comparing plants grown at the same time in the same location. Monsanto, however, pooled data from several locations, which makes it difficult for differences to be statistically significant. Nonetheless, the data revealed significant differences in the ash, fat, and carbohydrate content. Roundup Ready soy meal also contained 27% more trypsin inhibitor, a potential allergen, which might explain the sudden jump in soy allergies in the UK beginning right after Roundup Ready soy was introduced. Also, cows fed GM soy produced milk with a higher fat content, demonstrating another disparity between the two types of soy.
*
One field trial, however, did grow GM and non-GM plants next to each other, but this data was not included in the paper. Years after the study appeared, medical writer Barbara Keeler discovered the data that had been omitted. It showed that Monsanto’s GM soy had significantly lower levels of protein, a fatty acid, and phenylalanine, an essential amino acid. Also, toasted GM soy meal contained nearly twice the amount of a lectin—one that may interfere with the body’s ability to assimilate other nutrients. And the amount of trypsin inhibitor in cooked GM soy was as much as seven times higher than a cooked non-GM control.
*
The study also omitted many details normally required for a published paper. According to Pryme and Lembcke, “No data were given for most of the parameters.”
*
And when researchers tested the effects of Roundup Ready protein on animals, they didn’t extract the protein from the soybeans. Instead, they derived it from GM bacteria, claiming the two forms of protein were equivalent. There are numerous ways, however, in which the protein in the soy may be different. In fact, nine years after this study was published, another study showed that the gene inserted into the soybeans produced unintended aberrant RNA strands, meaning that the protein may be quite different than what was intended.[18]

In Pryme and Lembcke’s analysis, it came as no surprise that this Monsanto study, along with the other four peer-reviewed animal feeding studies that were “performed more or less in collaboration with private companies,” reported no negative effects of the GM diet. “On the other hand,” they wrote, “adverse effects were reported (but not explained) in [the five] independent studies.” They added, “It is remarkable that these effects have all been observed after feeding for only 10–14 days.”[19]

TOXIC GM FOODS COULD HAVE BEEN APPROVED

Two GM foods whose commercialization was stopped because of negative test results give a chilling example of what may be getting through. Rats fed GM potatoes had potentially precancerous cell growth in the stomach and intestines, less developed brains, livers, and testicles, partial atrophy of the liver, and damaged immune systems.[20] GM peas provoked an inflammatory response in mice, suggesting that the peas might trigger a deadly anaphylactic shock in allergic humans.[21] Both of these dangerous crops, however, could easily have been approved. The problems were only discovered because the researchers used advanced tests that were never applied to GM crops already on the market. Both would have passed the normal tests that companies typically use to get their products approved.

Ironically, when Monsanto was asked to comment on the pea study, their spokesperson said it demonstrated that the regulatory system works. He failed to disclose that none of the company’s GM crops had been put through such rigorous tests.

RAMPANT UNRELENTING INDUSTRY BIAS

Industry-funded research that favors the funders is not new. Bias has been identified across several industries. In pharmaceuticals, for example, positive results are four times more likely if the drug’s manufacturer funds the study.[22] When companies pay for the economic analyses of their own cancer drugs, the results are eight times more likely to be favorable.[23] Compared to drug research, the potential for industry manipulation in GM crop studies is considerably higher. Unlike pharmaceutical testing, GM research has no standardized procedures dictated by regulators. GM studies are not usually published in peer-reviewed journals and are typically kept secret by companies and governments. There is little money available for rigorous independent research, so company evidence usually goes unchallenged and unverified. Most importantly, whereas drugs can show serious side-effects and still be approved, GM food cannot. There is no tolerance for adverse reactions; feeding trials must show no problems.

Thus, when industry studies show problems (in spite of their efforts to avoid them), serious adverse reactions and even deaths among GM-fed animals are ignored or dismissed as “not biologically significant” or due to “natural variations.”

Numerous reports including peer-reviewed articles and part 3 of the book Genetic Roulette are replete with examples of rigged research. But making these public does not seem to curtail its practice. Consider the wormy corn of the British Food Journal. Not only has the editor refused to retract the paper, he has not even agreed to reconsider its Award for Excellence. A blatant propaganda exercise still stands validated as exemplary science.

In the critical arena of food safety research, where the health of society is caught in the balance, it is entirely unacceptable that the biotech industry is without accountability, standards, or peer-review. At our expense, they’ve got bad science down to a science.
THIS ARTICLE IS BASED ON PART 3 OF THE BOOK, GENETIC ROULETTE: THE DOCUMENTED HEALTH RISKS OF GENETICALLY ENGINEERED FOODS, BY JEFFREY M. SMITH. www.GeneticRoulette.com

Jeffrey M. Smith is the author of the new publication Genetic Roulette: The Documented Health Risks of Genetically Engineered Foods, which presents 65 risks in easy-to-read two-page spreads. His first book, Seeds of Deception, is the top rated and #1 selling book on GM foods in the world. He is the Executive Director of the Institute for Responsible Technology, which is spearheading the Campaign for Healthier Eating in America. Go to www.seedsofdeception.com to learn more about how to avoid GM foods.

[1] Powell D.A.; Blaine K.; Morris S.; Wilson J., Agronomic and consumer considerations for Bt and conventional sweet-corn, British Food Journal, Volume: 105, Issue: 10, Page: 700-713 (Nov 2003)

[2] GM Nation? The findings of the public debate, http://www.gmnation.org.uk/ut_09/ut_9_6.htm#summary

[3] To see the Toronto Star photo in Laidlaw’s book, go to http://www.gmwatch.org/p1temp.asp?pid=72&page=1

[4] Corn Fakes, Private Eye, No. 1194, 28 September-11 October 2007 http://www.gmwatch.org/archive2.asp?arcid=8314

[5] Editorial and letters, British Food Journal 2006 Vol : 108 Issue: 8 (August 2006)

http://www.foodsafetynetwork.ca/en/article-details.php?a=3&c=9&sc=62&id=897

[6] Tim Lambert, Would you eat wormy corn?, September 7 2007 http://scienceblogs.com/deltoid/2007/09/would_you_eat_wormy_sweet_corn.php

[7] “Elements of Precaution: Recommendations for the Regulation of Food Biotechnology in Canada; An Expert Panel Report on the Future of Food Biotechnology prepared by The Royal Society of Canada at the request of Health Canada Canadian Food Inspection Agency and Environment Canada” The Royal Society of Canada, January 2001.

[8] FIFRA Scientific Advisory Panel (SAP), Open Meeting, July 17, 2001.

[9] Doug Gurian-Sherman, “Holes in the Biotech Safety Net, FDA Policy Does Not Assure the Safety of Genetically Engineered Foods,” Center for Science in the Public Interest, http://www.cspinet.org/new/pdf/fda_report__final.pdf

[10] M. Cretenet, J. Goven, J. A. Heinemann, B. Moore, and C. Rodriguez-Beltran, “Submission on the DAR for application A549 Food Derived from High-Lysine Corn LY038: to permit the use in food of high-lysine corn, 2006, www.inbi.canterbury.ac.nz

[11] Judy Carman, “Is GM Food Safe to Eat?” in R. Hindmarsh, G. Lawrence, eds., Recoding Nature Critical Perspectives on Genetic Engineering (Sydney: UNSW Press, 2004): 82–93.

[12] FLRAG, “Comments to ANZFA about Applications A346, A362 and A363,” http://www.iher.org.au/

[13] Marc Lappé and Britt Bailey, “ASA Response,” June 25, 1999, http://cetos.org/articles/asaresponse.html

[14] S. R. Padgette, N. B.Taylor, D. L. Nida, M. R. Bailey, J. MacDonald, L. R. Holden, R. L. Fuchs, “The composition of glyphosate-tolerant soybean seeds is equivalent to that of conventional soybeans,” J. Nutr. 126 (1996):702–716.

[15] B. G. Hammond, J. L. Vicini, G. F. Hartnell, M. W. Naylor, C. D. Knight, E. H. Robinson, R. L. Fuchs, and S. R. Padgette, “The feeding value of soybeans fed to rats, chickens, catfish, and dairy cattle is not altered by genetic incorporation of glyphosate tolerance,” J. Nutr. 126 (1996): 717–727.

[16] A. Pusztai and S. Bardocz, “GMO in animal nutrition: potential benefits and risks,” Chapter 17, Biology of Nutrition in Growing Animals (Elsevier, October 2005). earlier

[17] Ian F. Pryme and Rolf Lembcke, “In Vivo Studies on Possible Health Consequences of Genetically Modified Food and Feed—with Particular Regard to Ingredients Consisting of Genetically Modified Plan Materials,” Nutrition and Health 17(2003): 1–8.

[18] Andreas Rang, et al, “Detection of RNA variants transcribed from the transgene in Roundup Ready soybean,” Eur Food

Res Technol 220 (2005): 438–443.

[19] Ian F. Pryme and Rolf Lembcke, “In Vivo Studies on Possible Health Consequences of Genetically Modified Food and Feed—with Particular Regard to Ingredients Consisting of Genetically Modified Plan Materials,” Nutrition and Health 17(2003): 1–8.

[20] Arpad Pusztai, “Can science give us the tools for recognizing possible health risks of GM food,” Nutrition and Health, 2002, Vol 16 Pp 73-84; Stanley W. B. Ewen and Arpad Pusztai, “Effect of diets containing genetically modified potatoes expressing Galanthus nivalis lectin on rat small intestine,” Lancet, 1999 Oct 16; 354 (9187): 1353-4; Arpad Pusztai, “Genetically Modified Foods: Are They a Risk to Human/Animal Health?” June 2001 Action Bioscience http://www.actionbioscience.org/biotech/pusztai.html; and A. Pusztai and S. Bardocz, “GMO in animal nutrition: potential benefits and risks,” Chapter 17, Biology of Nutrition in Growing Animals, R. Mosenthin, J. Zentek and T. Zebrowska (Eds.) Elsevier, October 2005

[21] V. E. Prescott, et al, “Transgenic Expression of Bean r-Amylase Inhibitor in Peas Results in Altered Structure and Immunogenicity,” Journal of Agricultural Food Chemistry (2005): 53.

[22] J. Lexchin, L. A. Bero, B. Djulbegovic, and O. Clark, “Pharmaceutical industry sponsorship and research outcome and quality: systematic review,” BMJ 326 (2003):1167–1176.

[23] Mark Friedberg, et al, “Evaluation of Conflict of Interest in Economic Analyses of New Drugs Used in Oncology,” JAMA 282 (1999):1453–1457.

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