Composition of forage and grain from second-generation insect-protected corn MON 89034 is equivalent to that of conventional corn (Zea mays L.).
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Matthew L Breeze | T. Reynolds | Suzanne M Drury | Tracey L Reynolds | William P Ridley | Natalia Bogdanova | Susan Riordan | Margaret A Nemeth | Roy Sorbet | William A Trujillo | M. Nemeth | S. Riordan | W. Ridley | Matthew L. Breeze | N. Bogdanova | W. Trujillo | R. Sorbet
[1] Patricia Harvey,et al. Glyphosate-Tolerant Cotton: The Composition of the Cottonseed Is Equivalent to That of Conventional Cottonseed , 1996 .
[2] J. Astwood,et al. Composition of grain and forage from corn rootworm-protected corn event MON 863 is equivalent to that of conventional corn (Zea mays l.). , 2004, Journal of agricultural and food chemistry.
[3] K. Nahm,et al. Dietary Fiber Fraction for Grains Containing High Levels of Water-Soluble Non-Starch Polysaccharides , 1999 .
[4] J. Lehrfeld. High-performance liquid chromatography analysis of phytic acid on a pH-stable, macroporous polymer column , 1989 .
[5] Andrew Cockburn,et al. Assuring the safety of genetically modified (GM) foods: the importance of an holistic, integrative approach. , 2002, Journal of biotechnology.
[6] A. Voragen. Technological aspects of functional food-related carbohydrates , 1998 .
[7] R. Simon,et al. Food biotechnology and genetic engineering. , 1996 .
[8] Wilhelm Gruissem,et al. Biochemistry & Molecular Biology of Plants , 2002 .
[9] B. Williams,et al. Vitamin E content of feedstuffs determined by high-performance liquid chromatographic fluorescence. , 1983, Journal of agricultural and food chemistry.
[10] Esther J Kok,et al. Nutritional and safety assessments of foods and feeds nutritionally improved through biotechnology. , 2005, Food and nutrition bulletin.
[11] R. Galeazzi,et al. Gas-liquid chromatography of bile acids: a new liquid phase for both acetate and trimethylsilyl derivatives. , 1976, Journal of lipid research.
[12] R. Sidhu,et al. Comparison of the nutritional profile of glyphosate-tolerant corn event NK603 with that of conventional corn (Zea mays L.). , 2002, Journal of agricultural and food chemistry.
[13] J. Lehrfeld. HPLC Separation and Quantitation of Phytic Acid and Some Inositol Phosphates in Foods: Problems and Solutions , 1994 .
[14] B. Mason,et al. Gas-chromatographic method for the determination of sugars in foods , 1971 .
[15] Ian Kimber,et al. The safety of genetically modified foods produced through biotechnology. , 2003, Toxicological sciences : an official journal of the Society of Toxicology.
[16] J. Knoll,et al. Inductively Coupled Plasma-Atomic Emission Spectrometry: Analysis of Biological Materials and Soils for Major, Trace, and Ultra-Trace Elements , 1978 .
[17] J. MacDonald,et al. The composition of glyphosate-tolerant soybean seeds is equivalent to that of conventional soybeans. , 1996, The Journal of nutrition.
[18] L. Holden,et al. Glyphosate-tolerant corn: the composition and feeding value of grain from glyphosate-tolerant corn is equivalent to that of conventional corn (Zea mays L.). , 2000, Journal of agricultural and food chemistry.
[19] R. Nicholson,et al. High-performance liquid chromatographic determination of hydroxycinnamic acids in the maize mesocotyl. , 1982 .
[20] A. Shariff,et al. Compositional analysis of glyphosate-tolerant soybeans treated with glyphosate. , 1999, Journal of agricultural and food chemistry.
[21] B. Philogéne,et al. Correlation of phenolic acid content of maize to resistance toSitophilus zeamais, the maize weevil, in CIMMYT'S collections , 1990, Journal of Chemical Ecology.
[22] P. Dowd,et al. Enzymatic oxidation products of allelochemicals as a basis for resistance against insects: effects on the corn leafhopper Dalbulus maidis. , 1996, Natural toxins.
[23] R. Fuchs,et al. Status and Safety of Biotech Crops , 2000 .
[24] M. T. Veciana-Nogués,et al. Determination of free and total furfural compounds in infant milk formulas by high-performance liquid chromatography , 1997 .
[25] A. Chesson,et al. New feeds from genetically modified plants: substantial equivalence, nutritional equivalence, digestibility, and safety for animals and the food chain , 2002 .