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MCPA 和二氟吡隆对草甘膦降解和土壤微生物的影响。

Effects of MCPA and difenoconazole on glyphosate degradation and soil microorganisms.

机构信息

Institute of Soil Science and Land Evaluation, Department of Soil Biology, University of Hohenheim, Emil-Wolff-Straße 27, 70599, Stuttgart, Germany.

Institute of Soil Science and Land Evaluation, Department of Soil Biology, University of Hohenheim, Emil-Wolff-Straße 27, 70599, Stuttgart, Germany.

出版信息

Environ Pollut. 2024 Dec 1;362:124926. doi: 10.1016/j.envpol.2024.124926. Epub 2024 Sep 10.

Abstract

Modern agriculture relies heavily on pesticide use to meet the demands of food quality and quantity. Therefore, pesticides are often applied in mixtures, leading to a diverse cocktail of chemicals and their metabolites in soils, which can affect non-target organisms such as soil microorganisms. Pesticides are tested for their single effects, but studies on their interactive effects are scarce. This study aimed to determine the effects of up to three simultaneously applied pesticides on the soil microbial community and on their special function in pesticide degradation. Agricultural soil without previous pesticide application was exposed to different mixtures of the herbicide glyphosate (GLP), the phenoxy herbicide MCPA (2-methyl-4-chlorophenoxyacetic acid) and the fungicide difenoconazole (DFC) for up to 56 days. Isotopic and molecular methods were used to investigate effects of the mixtures on the microbial community and to follow the mineralization and utilization of GLP. An initial increase in the metabolic quotient by up to 35 % in the presence of MCPA indicated a stress reaction of the microbial community. The presence of multiple pesticides reduced both gram positive bacterial fatty acid methyl esters (FAMEs) by 13 % and the abundance of microorganisms with the genetic potential for GLP degradation via the AMPA (aminomethylphosphonic acid) pathway. Both the number of pesticides and the identities of individual pesticides played major roles. Surprisingly, an increase in C-labelled GLP mineralization of up to 40 % was observed while carbon use efficiency (CUE) decreased. Interactions between multiple pesticides might alter the behavior of individual pesticides and be reflected in the microbial community. Our results highlight the importance of investigating not only single pesticides, but also pesticide mixtures and their interactions.

摘要

现代农业在很大程度上依赖于农药的使用,以满足食品质量和数量的需求。因此,农药经常混合使用,导致土壤中的化学物质及其代谢物种类繁多,这可能会影响到土壤微生物等非目标生物。农药的单一效应已得到测试,但对其相互作用的研究却很少。本研究旨在确定多达三种同时施用的农药对土壤微生物群落及其在农药降解特殊功能上的影响。本研究使用同位素和分子方法来研究混合物对微生物群落的影响,并跟踪 GLP 的矿化和利用。没有先前使用过农药的农业土壤在长达 56 天的时间里暴露于草甘膦(GLP)、苯氧羧酸类除草剂 MCPA(2-甲基-4-氯苯氧乙酸)和三唑类杀菌剂烯唑醇(DFC)的不同混合物中。没有先前使用过农药的农业土壤在长达 56 天的时间里暴露于草甘膦(GLP)、苯氧羧酸类除草剂 MCPA(2-甲基-4-氯苯氧乙酸)和三唑类杀菌剂烯唑醇(DFC)的不同混合物中。在 MCPA 的存在下,代谢商最初增加了高达 35%,表明微生物群落存在应激反应。多种农药的存在使革兰氏阳性菌脂肪酸甲酯(FAMEs)减少了 13%,并减少了具有通过 AMPA(氨甲基膦酸)途径降解 GLP 的遗传潜力的微生物丰度。农药的数量和个别农药的身份都起着主要作用。令人惊讶的是,虽然碳利用效率(CUE)降低,但观察到 C 标记的 GLP 矿化增加了高达 40%。多种农药之间的相互作用可能改变了个别农药的行为,并反映在微生物群落中。我们的研究结果强调了不仅要研究单一农药,还要研究农药混合物及其相互作用的重要性。

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