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Effects of plant species richness and evenness on soil microbial community diversity and function

机译:植物物种丰富度和均匀度对土壤微生物群落多样性和功能的影响

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Understanding the links between plant diversity and soil communities is critical to disentangling the mechanisms by which plant communities modulate ecosystem function. Experimental plant communities varying in species richness, evenness, and density were established using a response surface design and soil community properties including bacterial and archaeal abundance, richness, and evenness were measured. The potential to perform a representative soil ecosystem function, oxidation of ammonium to nitrite, was measured via archaeal and bacterial amoA genes. Structural equation modeling was used to explore the direct and indirect effects of the plant community on soil diversity and potential function. Plant communities influenced archaea and bacteria via different pathways. Species richness and evenness had significant direct effects on soil microbial community structure, but the mechanisms driving these effects did not include either root biomass or the pools of carbon and nitrogen available to the soil microbial community. Species richness had direct positive effects on archaeal amoA prevalence, but only indirect impacts on bacterial communities through modulation of plant evenness. Increased plant evenness increased bacterial abundance which in turn increased bacterial amoA abundance. These results suggest that plant community evenness may have a strong impact on some aspects of soil ecosystem function. We show that a more even plant community increased bacterial abundance, which then increased the potential for bacterial nitrification. A more even plant community also increased total dissolved nitrogen in the soil, which decreased the potential for archaeal nitrification. The role of plant evenness in structuring the soil community suggests mechanisms including complementarity in root exudate profiles or root foraging patterns.
机译:理解植物多样性与土壤群落之间的联系对于解开植物群落调节生态系统功能的机制至关重要。使用响应面设计建立了物种丰富度,均匀度和密度不同的实验植物群落,并测量了土壤群落特性,包括细菌和古细菌的丰度,丰富度和均匀性。通过古细菌和细菌amoA基因测量了潜在的具有代表性的土壤生态系统功能(将铵氧化为亚硝酸盐)的潜力。使用结构方程模型来探索植物群落对土壤多样性和潜在功能的直接和间接影响。植物群落通过不同途径影响古细菌和细菌。物种的丰富度和均匀度对土壤微生物群落结构具有显着的直接影响,但驱动这些影响的机制既不包括根生物量,也不包括土壤微生物群落可利用的碳和氮库。物种丰富度对古细菌的amoA流行率具有直接的积极影响,但仅通过调节植物的均匀度而对细菌群落产生间接影响。增加植物均匀度会增加细菌丰度,进而增加细菌amoA的丰度。这些结果表明,植物群落的均匀性可能对土壤生态系统功能的某些方面产生很大的影响。我们表明,更均匀的植物群落增加了细菌的丰度,从而增加了细菌硝化的潜力。更为均匀的植物群落也增加了土壤中的总溶解氮,从而降低了古硝化的潜力。植物均匀度在构建土壤群落中的作用提示了机制,包括根系分泌物特征或根系觅食模式的互补性。

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