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Root biomass and exudates link plant diversity with soil bacterial and fungal biomass

机译:根生物量和渗出物将植物多样性与土壤细菌和真菌生物量联系起来

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摘要

Plant diversity has been shown to determine the composition and functioning of soil biota. Although root-derived organic inputs are discussed as the main drivers of soil communities, experimental evidence is scarce. While there is some evidence that higher root biomass at high plant diversity increases substrate availability for soil biota, several studies have speculated that the quantity and diversity of root inputs into the soil, i.e. though root exudates, drive plant diversity effects on soil biota. Here we used a microcosm experiment to study the role of plant species richness on the biomass of soil bacteria and fungi as well as fungal-to-bacterial ratio via root biomass and root exudates. Plant diversity significantly increased shoot biomass, root biomass, the amount of root exudates, bacterial biomass, and fungal biomass. Fungal biomass increased most with increasing plant diversity resulting in a significant shift in the fungal-to-bacterial biomass ratio at high plant diversity. Fungal biomass increased significantly with plant diversity-induced increases in root biomass and the amount of root exudates. These results suggest that plant diversity enhances soil microbial biomass, particularly soil fungi, by increasing root-derived organic inputs.
机译:研究表明,植物的多样性决定了土壤生物的组成和功能。尽管讨论了根源有机输入作为土壤群落的主要驱动力,但缺乏实验证据。虽然有证据表明在较高的植物多样性下较高的根系生物量增加了土壤生物群的底物利用率,但多项研究推测,进入土壤的根系投入物的数量和多样性(即根系分泌物)驱动植物多样性对土壤生物群的影响。在这里,我们使用微观实验研究了植物物种丰富度对土壤细菌和真菌生物量以及根生物量和根系分泌物的真菌与细菌比率的作用。植物多样性显着增加了芽生物量,根生物量,根分泌物,细菌生物量和真菌生物量。真菌生物量随植物多样性的增加而增加最多,从而导致高植物多样性下真菌与细菌生物量的比率发生了显着变化。真菌生物量随植物多样性诱导的根生物量和根分泌物数量的增加而显着增加。这些结果表明,植物多样性通过增加根源有机输入来增强土壤微生物的生物量,特别是土壤真菌。

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