首页> 外文期刊>The Science of the Total Environment >Impact of a synthetic fungicide (fosetyl-Al and propamocarb-hydrochloride) and a biopesticide (Clonostachys rosea) on soil bacterial, fungal, and protist communities
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Impact of a synthetic fungicide (fosetyl-Al and propamocarb-hydrochloride) and a biopesticide (Clonostachys rosea) on soil bacterial, fungal, and protist communities

机译:合成杀菌剂(Fosetyl-Al和丙种碳酸-Hyrochloride)的影响和生物农药(Clonostachys Rosea)对土壤细菌,真菌和抗议者社区

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摘要

The use of synthetic pesticides in agriculture is increasingly debated. However, few studies have compared the impact of synthetic pesticides and alternative biopesticides on non-target soil microorganisms playing a central role in soil functioning. We conducted a mesocosm experiment and used high-throughput amplicon sequencing to test the impact of a fungal biopesticide and a synthetic fungicide on the diversity, the taxonomic and functional compositions, and co-occurrence patterns of soil bacterial, fungal and protist communities. Neither the synthetic pesticide nor the biopesticide had a significant effect on microbial α-diversity. However, both types of pesticides decreased the complexity of the soil microbial network. The two pesticides had contrasting impacts on the composition of microbial communities and the identity of key taxa as revealed by microbial network analyses. The biopesticide impacted keystone taxa that structured the soil microbial network. The synthetic pesticide modified biotic interactions favouring taxa that are less efficient at degrading organic compounds. This suggests that the biopesticides and the synthetic pesticide have different impact on soil functioning. Altogether, our study shows that pest management products may have functionally significant impacts on the soil microbiome even if microbial α-diversity is unaffected. It also illustrates the potential of high-throughput sequencing analyses to improve the ecotoxicological risk assessment of pesticides on non-target soil microorganisms.
机译:农业合成农药的使用越来越讨论。然而,很少有研究比较了合成杀虫剂和替代生物生物对非靶土壤微生物的影响在土壤运作中发挥着核心作用的影响。我们进行了Mesocosm实验并使用了高通量扩增子测序,以测试真菌生物农药和合成杀菌剂对多样性,分类和功能组合物的影响,以及土壤细菌,真菌和抗议群体的共生成模式。合成农药和生物农药都没有对微生物α-多样性产生显着影响。然而,两种类型的农药都降低了土壤微生物网络的复杂性。这两种农药对微生物网络分析揭示的微生物社区组成和关键分类群的身份对比的影响。生物农药影响了构成土壤微生物网络的梯形株。合成农药改性的生物相互作用有利于降解有机化合物效率较低的分类群。这表明生物农药和合成农药对土壤功能的影响不同。完全,我们的研究表明,即使微生物α-多样性不受影响,害虫管理产品也可能对土壤微生物组产生功能显着的影响。它还说明了高通量测序分析的潜力,以改善非靶土壤微生物对农药的生态毒理学风险评估。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|139635.1-139635.10|共10页
  • 作者单位

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland Institute of Environmental Science and Geography University of Potsdam Karl-Liebknecht-Str. 24-25 14476 Potsdam Germany;

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland;

    Avenue Ignace Paderewski 12 1110 Morges Switzerland;

    Universite de Strasbourg Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS) UMR 7517 CNRS/EOST 1 Rue Blessig 67084 Strasbourg Cedex France;

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland;

    Laboratory of Soil Biodiversity University of Neuchatel. Rue Emile Argand 11 2000 Neuchatel Switzerland Jardin Botanique de Neuchatel Chemin du Pertuis-du-Sault 58 2000 Neuchatel Switzerland;

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland;

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland;

    Soil and Biotechnology Division Federal Office for the Environment (FOEN) 3003 Bern Switzerland;

    Soil Science and Environment Group CHANGINS University of Applied Sciences and Arts Western Switzerland Route de Duillier 50 1260 Nyon Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological control agents; Microbial community; Microbiome; Non-target microorganism; Pest management; Soil biodiversity; Synthetic pesticide;

    机译:生物控制剂;微生物群落;微生物组;非靶微生物;害虫管理;土壤生物多样性;合成农药;

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