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Glyphosate uptake, translocation, resistance emergence in crops, analytical monitoring, toxicity and degradation: a review

机译:草甘膦摄取,易位,抗性出现作物,分析监测,毒性和降解:综述

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摘要

The herbicide glyphosate is widely used to control weeds in grain crops. The overuse of glyphosate has induced issues such as contamination of surface water, decreased soils fertility, adverse effects on soil microbiota and possible incorporation in food chains. Here we review biochemical, agricultural, microbiological and analytical aspects of glyphosate. We discuss uptake, translocation, toxicity, degradation, complexation behaviour, analytical monitoring techniques and resistance emergence in crops. We provide data of glyphosate toxicity on different ecosystems. Experiments reveal that excessive glyphosate use induces stress on crops and on non-target plants, and is toxic for mammalians, microorganisms and invertebrates. The long half-life period of glyphosate and its metabolites under different environmental conditions is a major concern. Development of analytical methods for the detection of glyphosate is important because glyphosate has no chromophoric or fluorophoric groups.
机译:除草剂草甘膦广泛用于控制谷物作物中的杂草。 草甘膦过度使用的诱导问题如地表水污染,降低了土壤肥力,对土壤微生物的不利影响以及食物链中可能的掺入。 在这里,我们回顾了草甘膦的生物化学,农业,微生物和分析方面。 我们讨论了作物的摄取,易位,毒性,降解,络合行为,分析监测技术和抗性出现。 我们提供不同生态系统对草甘膦毒性的数据。 实验表明,过量的草甘膦使用诱导作物和非靶植物的应激,对哺乳动物,微生物和无脊椎动物有毒。 在不同环境条件下的草甘膦长期半寿命和其代谢物是一个主要问题。 检测草甘膦的分析方法的发展是重要的,因为草甘膦没有发色团或荧光团。

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