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The effects of glyphosate glufosinate paraquat and paraquat-diquat on soil microbial activity and bacterial archaeal and nematode diversity

机译:草甘膦草铵膦百草枯和百草枯-敌草快对土壤微生物活性及细菌古细菌和线虫多样性的影响

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摘要

In this study, we investigated the effects of one-off applications of glyphosate, glufosinate, paraquat, and paraquat-diquat on soil microbial diversity and function. All herbicides were added to soil as pure compounds at recommended dose and were incubated under laboratory conditions for 60 days. High-throughput phylogenetic marker gene sequencing revealed that none of the herbicides significantly influenced the richness, evenness and composition of bacterial and archaeal communities. Likewise, the diversity, composition and size of nematode communities were not significantly influenced by any of the herbicides. From a functional perspective, herbicides did not significantly affect fluorescein diacetate hydrolysis (FDA) and beta-glucosidase activities. Furthermore, the ability of soil organisms to utilise 15 substrates was generally unaffected by herbicide application. The only exception to this was a temporary impairment in the ability of soil organisms to utilise three organic acids and an amino acid. Given the global and frequent use of these herbicides, it is important that future studies evaluate their potential impacts on microbial communities in a wider-range of soils and environmental conditions.
机译:在这项研究中,我们调查了一次性施用草甘膦,草铵膦,百草枯和百草枯-敌草快对土壤微生物多样性和功能的影响。将所有除草剂以纯化合物的推荐剂量添加到土壤中,并在实验室条件下孵育60天。高通量系统发生标记基因测序表明,除草剂均未显着影响细菌和古细菌群落的丰富度,均匀度和组成。同样,线虫群落的多样性,组成和大小也不受任何除草剂的影响。从功能的角度来看,除草剂不会显着影响荧光素双乙酸酯水解(FDA)和β-葡萄糖苷酶的活性。此外,土壤生物利用15种基质的能力通常不受除草剂施用的影响。唯一的例外是土壤生物利用三种有机酸和一种氨基酸的能力暂时受损。考虑到这些除草剂在全球的广泛使用,重要的是,未来的研究评估它们在更广泛的土壤和环境条件下对微生物群落的潜在影响。

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