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模拟干旱对长期常规农业和有机农业下生物土壤质量、微生物多样性和产量的影响。

Effects of simulated drought on biological soil quality, microbial diversity and yields under long-term conventional and organic agriculture.

机构信息

Department of Soil Sciences, Research Institute of Organic Agriculture (FiBL), 5070 Frick, Switzerland.

Ecology, Department of Biology, University of Konstanz, 78464 Konstanz, Germany.

出版信息

FEMS Microbiol Ecol. 2020 Nov 27;96(12). doi: 10.1093/femsec/fiaa205.

Abstract

Drought and agricultural management influence soil microorganisms with unknown consequences for the functioning of agroecosystems. We simulated drought periods in organic (biodynamic) and conventional wheat fields and monitored effects on soil water content, microorganisms and crops. Above the wilting point, water content and microbial respiration were higher under biodynamic than conventional farming. Highest bacterial and fungal abundances were found in biodynamically managed soils, and distinct microbial communities characterised the farming systems. Most biological soil quality parameters and crop yields were only marginally affected by the experimental drought, except for arbuscular mycorrhizal fungi (AMF), which increased in abundance under the experimental drought in both farming systems. AMF were further strongly promoted by biodynamic farming resulting in almost three times higher AMF abundance under experimental drought in the biodynamic compared with the conventional farming system. Our data suggest an improved water storage capacity under biodynamic farming and confirms positive effects of biodynamic farming on biological soil quality. The interactive effects of the farming system and drought may further be investigated under more substantial droughts. Given the importance of AMF for the plant's water supply, more in-depth studies on AMF may help to clarify their role for yields under conditions predicted by future climate scenarios.

摘要

干旱和农业管理会影响土壤微生物,但其对农业生态系统功能的影响尚不清楚。我们模拟了有机(生物动力)和常规麦田的干旱期,并监测了其对土壤水分、微生物和作物的影响。在萎蔫点以上,生物动力农业下的土壤水分和微生物呼吸高于常规农业。生物动力管理的土壤中发现了最高的细菌和真菌丰度,并且不同的微生物群落特征化了农业系统。除了丛枝菌根真菌(AMF)外,大多数土壤生物质量参数和作物产量仅受到实验性干旱的轻微影响,而在两种农业系统中,实验性干旱下 AMF 的丰度均增加。生物动力农业进一步强烈促进了 AMF,导致在生物动力农业下实验性干旱下的 AMF 丰度比常规农业系统高近三倍。我们的数据表明生物动力农业下具有更好的储水能力,并证实了生物动力农业对土壤生物质量的积极影响。在更严重的干旱条件下,可以进一步研究农业系统和干旱之间的相互作用。鉴于 AMF 对植物供水的重要性,对 AMF 的更深入研究可能有助于阐明其在未来气候情景预测条件下对产量的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d2/7705324/f20fc6594778/fiaa205fig1.jpg

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