Results 101 to 110 of about 3,784 (163)

Assessment of genetically modified maize DP202216 × NK603 × DAS-40278-9 (application GMFF-2022-6232). [PDF]

open access: yesEFSA J
EFSA Panel on Genetically Modified Organisms (GMO)   +29 more
europepmc   +1 more source

Assessment of genetically modified soybean MON 94313 (application GMFF-2022-6595). [PDF]

open access: yesEFSA J
EFSA Panel on Genetically Modified Organisms (GMO)   +31 more
europepmc   +1 more source
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Comparing toxicity and biodegradation of racemic glufosinate and L-glufosinate in green algae Scenedesmus obliquus

Science of the Total Environment, 2022
Glufosinate-ammonium, a widely used chiral herbicide, has become the focus of attention because of its toxicity toward non-target organisms and its degradation behavior in the environment. With the introduction of L-glufosinate-ammonium products, the toxicity and environmental behavior of rac-glufosinate-ammonium and L-glufosinate-ammonium have become ...
Deyu Hu, Yuping Zhang, Xiurou Meng
exaly   +3 more sources

Comparative analysis of toxicity and metabolomic profiling of rac-glufosinate and L-glufosinate in zebrafish

Aquatic Toxicology, 2023
Glufosinate is a chiral pesticide, with commercial formulations such as racemic glufosinate (rac-glufosinate) and pure L-glufosinate enantiomer (L-glufosinate) on the market. There has been little research on the difference in toxicity to non-target organisms between these two main ingredients.
Deyu Hu, Yuping Zhang
exaly   +3 more sources

Comparison of the chronic and multigenerational toxicity of racemic glufosinate and -glufosinate to Caenorhabditis elegans at environmental concentrations

Chemosphere, 2023
Glufosinate-ammonium, the second largest transgene crop resistant herbicide, is classified as a mobile persistent pollutant by the U.S. Environmental Protection Agencybecause of its slow decomposition and easy mobile transfer in a water environment. The chronic and multigeneration toxicity of this compound to environmental organisms are alarming.
Xu, Zhao   +5 more
exaly   +3 more sources

Glufosinate Resistance Level is Proportional to Phosphinothricin Acetyltransferase Gene Expression in Glufosinate-Resistant Maize

Journal of Agricultural and Food Chemistry, 2018
Phosphinothricin acetyltransferase ( pat) gene confers resistance to glufosinate by transforming this herbicide into N-acetyl-l-glufosinate (NAG). The pat gene was inserted in six maize hybrids (Herculex, Agrisure TL, Herculex Yieldgard, Leptra, Viptera 3, Power Core) as a selectable marker, and its expression was evaluated by qPCR in comparison with ...
Fabio Henrique Krenchinski   +2 more
exaly   +4 more sources

Mesotrione and Glufosinate in Glufosinate-Resistant Corn

Weed Technology, 2008
Field experiments were conducted in 1999 and 2000 to evaluate early POST (EPOST) and late POST (LPOST) control of common ragweed and giant foxtail with mesotrione at 70, 105, and 140 g ai/ha alone and in mixtures with glufosinate at 300 g ai/ha in glufosinate-resistant corn.
Gregory R. Armel   +3 more
openaire   +1 more source

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