首页> 外文期刊>Environmental Science and Pollution Research >Environmental Metabolic Footprinting (EMF) vs. half-life: a new and integrative proxy for the discrimination between control and pesticides?exposed sediments in order to further characterise pesticides’ environmental impact
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Environmental Metabolic Footprinting (EMF) vs. half-life: a new and integrative proxy for the discrimination between control and pesticides?exposed sediments in order to further characterise pesticides’ environmental impact

机译:环境代谢脚印(EMF)与半衰期:控制和农药之间歧视的新和综合性代理?暴露沉积物,以进一步表征农药的环境影响

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摘要

Pesticides are regularly used for a variety of applications and are disseminated throughout the environment. These substances may have significant negative impacts. To date, the half-life, t~(1/2), was often used to study the fate of pesticides in environmental matrices (water, soil, sediment). However, this value gives limited information. First, it does not evaluate the formation of by-products, resulting in the need for additional experiments to be performed to evaluate biodegradation and biotransformation products. T~(1/2)also fails to consider the chemical’s impact on biodiversity. Resilience time, a new and integrative proxy, was recently proposed as an alternative to t~(1/2), with the potential to evaluate all the post-application effects of the chemical on the environment. The ‘Environmental Metabolic Footprinting’ (EMF) approach, giving an idea of the resilience time, was used to evaluate the impact of botanicals on soil. The goal is to optimise the EMF to study the impact of a microbial insecticide, the Bacillus thuringiensis israelensis (Bti), on sediment. The difficulty of this work lies in the commercial solution of Bti that is really complex, and this complexity yields chromatograms that are extremely difficult to interpret; t~(1/2)cannot be used. No methodologies currently exist to monitor the impact of these compounds on the environment. We will test the EMF to determine if it is sensitive enough to tolerate such complex mixtures. A pure chemical insecticide, the α-cypermethrin, will be also studied. The article shows that the EMF is able to distinguish meta-metabolome differences between control and exposed (with Bti) sediments.
机译:杀虫剂经常用于各种应用,并在整个环境中传播。这些物质可能产生显着的负面影响。迄今为止,半衰期T〜(1/2)经常用于研究环境基质(水,土壤,沉积物)的农药的命运。但是,此值给出了有限的信息。首先,它不评估副产物的形成,导致需要进行额外的实验以评估生物降解和生物转化产品。 T〜(1/2)也未能考虑化学物质对生物多样性的影响。最近提出了一种新的综合时间,新的和综合性代理作为T〜(1/2)的替代方案,有可能评估化学物质对环境的所有申请效果。 “环境代谢脚印”(EMF)方法,了解抵御能力时间,用于评估植物对土壤的影响。目标是优化EMF研究微生物杀虫剂,苏云芽孢杆菌(BTI),沉积物的影响。这项工作的难度在于BTI的商业解决方案,这是非常复杂的,这种复杂性产生了极难解释的色谱图;不能使用t〜(1/2)。目前没有任何方法以监测这些化合物对环境的影响。我们将测试EMF以确定是否敏感以容忍这种复杂的混合物。还研究了一种纯化学杀虫剂,α-椰水甲菊酯。本文表明,EMF能够区分控制与暴露(与BTI)沉积物之间的元代谢差异。

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