Meyer Cara, Jeanbille Mathilde, Breuil Marie-Christine, Bru David, Höfer Kristin, Screpanti Claudio, Philippot Laurent
Université Bourgogne, INRAE, Institut Agro Dijon, Agroécologie, 17 rue Sully, 21000 Dijon, France; Syngenta Crop Protection Research Stein, Schaffhauserstrasse 101, 4332 Stein, Switzerland.
Université Bourgogne, INRAE, Institut Agro Dijon, Agroécologie, 17 rue Sully, 21000 Dijon, France.
Sci Total Environ. 2024 Dec 20;957:177557. doi: 10.1016/j.scitotenv.2024.177557. Epub 2024 Nov 20.
Fungicides are an essential component of current agricultural practices, but their extensive use has raised concerns about their effects on non-target soil microorganisms, which carry out essential ecosystem functions. However, despite the complexity of microbial communities, many studies investigating their response to fungicides focus only on bacteria or fungi at one point in time. In this study, we used amplicon sequencing to assess the effect of the fungicide hymexazol on the diversity, composition, and co-occurrence network of soil bacteria, fungi, and protists at 7, 21, and 60 days after application. We found that hymexazol had very little effect on microbial alpha-diversity, but that microbial community composition and OTU differential abundance were altered over the duration of the experiment, even after hymexazol concentrations were undetectable. The co-occurrence patterns within and between microbial kingdoms were affected by hymexazol dose, suggesting that indirect effects may play a role in the microbial community response. Nitrogen cycling was also affected, with a transient hymexazol-associated increase in the abundance of ammonia-oxidizing microorganisms and soil nitrate concentration. These findings highlight that the effects of fungicides on soil microorganisms are dynamic and extensive, spanning several taxonomic kingdoms.
杀菌剂是当前农业生产实践中的重要组成部分,但其广泛使用引发了人们对其对非靶标土壤微生物影响的担忧,这些微生物执行着关键的生态系统功能。然而,尽管微生物群落具有复杂性,但许多研究其对杀菌剂反应的研究仅在某一时刻关注细菌或真菌。在本研究中,我们使用扩增子测序来评估杀菌剂恶霉灵在施用后7天、21天和60天对土壤细菌、真菌和原生生物的多样性、组成及共现网络的影响。我们发现恶霉灵对微生物α多样性影响很小,但在实验期间微生物群落组成和OTU差异丰度发生了改变,即使在恶霉灵浓度检测不到之后也是如此。微生物界内和界间的共现模式受到恶霉灵剂量的影响,这表明间接效应可能在微生物群落反应中起作用。氮循环也受到影响,与恶霉灵相关的氨氧化微生物丰度和土壤硝酸盐浓度出现短暂增加。这些发现突出表明,杀菌剂对土壤微生物的影响是动态且广泛的,涉及多个分类界。