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首页> 外文期刊>Soil Biology & Biochemistry >Switchgrass rhizospheres stimulate microbial biomass but deplete microbial necromass in agricultural soils of the upper Midwest, USA
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Switchgrass rhizospheres stimulate microbial biomass but deplete microbial necromass in agricultural soils of the upper Midwest, USA

机译:柳枝rh根际刺激美国中西部上层农业土壤中的微生物生物量,但耗尽微生物坏死

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摘要

Rhizosphere microbial communities play an essential role in determining plant productivity, particularly in agriculturally marginal environments. Perennial plants like switchgrass (Panicum virgatum) are thought to particularly influence microbial community composition and function within their rhizosphere. We compared microbial communities in switchgrass rhizospheres and their associated bulk soils in two regions of the U.S. upper Midwest (Michigan and Wisconsin) with contrasting soil types, and at two site types with differing switchgrass establishment ages and management intensities. We characterized microbial communities with a range of culture-independent methods, including amplicon sequencing of 16S/18S rRNA and nifH genes, and membrane lipid profiling. In addition, we quantified abundances of soil amino sugars, a time-integrative indicator of microbial necromass. We found that amino sugar contents and microbial lipid profiles differed between rhizosphere and bulk soils, while DNA-based assays did not provide this discriminatory power. Differences between rhizosphere and bulk soils were not significantly affected by region or site type. Rhizosphere soils had higher microbial lipid abundances, particularly those associated with arbuscular mycorrhizal fungi and Gram-negative bacteria, while amino sugar abundances decreased in the rhizosphere. Our findings suggest switchgrass rhizospheres systematically stimulate microbial growth and microbial residue turnover. (C) 2015 Elsevier Ltd. All rights reserved.
机译:根际微生物群落在决定植物生产力,特别是在农业边缘环境中,起着至关重要的作用。多年生植物如柳枝switch(Panicum virgatum)被认为特别影响其根际内的微生物群落组成和功能。我们比较了美国中西部两个地区(密歇根州和威斯康星州)的柳枝rh根际微生物群落及其相关的块状土壤,土壤类型相反,柳枝switch建立年龄和管理强度不同的两个地点类型也是如此。我们通过一系列与培养无关的方法对微生物群落进行了表征,包括16S / 18S rRNA和nifH基因的扩增子测序以及膜脂质谱分析。此外,我们量化了土壤氨基糖的含量,这是微生物坏死时间的综合指标。我们发现,根际土壤和块状土壤之间的氨基糖含量和微生物脂质谱存在差异,而基于DNA的测定法则不能提供这种区分能力。根际和块状土壤之间的差异不受区域或地点类型的显着影响。根际土壤具有较高的微生物脂质丰度,尤其是与丛枝菌根真菌和革兰氏阴性细菌相关的微生物,而根际土壤中的氨基糖丰度降低。我们的发现表明柳枝switch根际系统地刺激微生物的生长和微生物残留的更新。 (C)2015 Elsevier Ltd.保留所有权利。

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