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蚯蚓减轻农药对土壤微生物活性的影响。

Earthworms Mitigate Pesticide Effects on Soil Microbial Activities.

作者信息

Bart Sylvain, Pelosi Céline, Barraud Alexandre, Péry Alexandre R R, Cheviron Nathalie, Grondin Virginie, Mougin Christian, Crouzet Olivier

机构信息

UMR ECOSYS, INRA, AgroParisTech, Université Paris-Saclay, Versailles, France.

出版信息

Front Microbiol. 2019 Jul 3;10:1535. doi: 10.3389/fmicb.2019.01535. eCollection 2019.

Abstract

Earthworms act synergistically with microorganisms in soils. They are ecosystem engineers involved in soil organic matter degradation and nutrient cycling, leading to the modulation of resource availability for all soil organisms. Using a soil microcosm approach, we aimed to assess the influence of the earthworm on the response of soil microbial activities against two fungicides, i.e., Cuprafor Micro (copper oxychloride, a metal) and Swing Gold (epoxiconazole and dimoxystrobin, synthetic organic compounds). The potential nitrification activity (PNA) and soil enzyme activities (glucosidase, phosphatase, arylamidase, and urease) involved in biogeochemical cycling were measured at the end of the incubation period, together with earthworm biomass. Two common indices of the soil biochemistry were used to aggregate the response of the soil microbial functioning: the geometric mean (Gmean) and the Soil Quality Index (SQI). At the end of the experiment, the earthworm biomass was not impacted by the fungicide treatments. Overall, in the earthworm-free soil microcosms, the two fungicides significantly increased several soil enzyme and nitrification activities, leading to a higher GMean index as compared to the non-treated control soils. The microbial activity responses depended on the type of activity (nitrification was the most sensitive one), on the fungicide (Swing Gold or Cuprafor Micro), and on the doses. The SQI indices revealed higher effects of both fungicides on the soil microbial activity in the absence of earthworms. The presence of earthworms enhanced all soil microbial activities in both the control and fungicide-contaminated soils. Moreover, the magnitude of the fungicide impact, integrated through the SQI index, was mitigated by the presence of earthworms, conferring a higher stability of microbial functional diversity. Our results highlight the importance of biotic interactions in the response of indicators of soil functioning (i.e., microbial activity) to pesticides.

摘要

蚯蚓与土壤中的微生物协同作用。它们是生态系统工程师,参与土壤有机质降解和养分循环,从而调节所有土壤生物可利用资源。我们采用土壤微观世界方法,旨在评估蚯蚓对土壤微生物活性针对两种杀菌剂(即Cuprafor Micro(碱式氯化铜,一种金属)和Swing Gold(环氧菌唑和嘧菌酯,合成有机化合物))的响应的影响。在培养期结束时,测量了参与生物地球化学循环的潜在硝化活性(PNA)和土壤酶活性(葡糖苷酶、磷酸酶、芳基酰胺酶和脲酶),同时测量了蚯蚓生物量。使用两个常见的土壤生物化学指标来汇总土壤微生物功能的响应:几何平均值(Gmean)和土壤质量指数(SQI)。在实验结束时,蚯蚓生物量未受到杀菌剂处理的影响。总体而言,在无蚯蚓的土壤微观世界中,两种杀菌剂显著提高了几种土壤酶和硝化活性,与未处理的对照土壤相比,导致更高的GMean指数。微生物活性响应取决于活性类型(硝化是最敏感的一种)、杀菌剂(Swing Gold或Cuprafor Micro)和剂量。SQI指数显示,在没有蚯蚓的情况下,两种杀菌剂对土壤微生物活性的影响更大。蚯蚓的存在增强了对照土壤和受杀菌剂污染土壤中的所有土壤微生物活性。此外,通过SQI指数综合衡量的杀菌剂影响程度因蚯蚓的存在而减轻,赋予了微生物功能多样性更高的稳定性。我们的结果突出了生物相互作用在土壤功能指标(即微生物活性)对农药响应中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0f8/6616067/b16bd5a32c3c/fmicb-10-01535-g001.jpg

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