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Soil microbiomes with distinct assemblies through vertical soil profiles drive the cycling of multiple nutrients in reforested ecosystems

机译:通过垂直土壤剖面具有不同组件的土壤微生物探测在重新造林生态系统中的多种营养素的循环驱动

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Soil microbiomes play an important role in the services and functioning of terrestrial ecosystems. However, little is known of their vertical responses to restoration process and their contributions to soil nutrient cycling in the subsurface profiles. Here, we investigated the community assembly of soil bacteria, archaea, and fungi along vertical (i.e., soil depths of 0-300?cm) and horizontal (i.e., distance from trees of 30-90?cm) profiles in a chronosequence of reforestation sites that represent over 30?years of restoration. In the superficial layers (0-80?cm), bacterial and fungal diversity decreased, whereas archaeal diversity increased with increasing soil depth. As reforestation proceeded over time, the vertical spatial variation in bacterial communities decreased, while that in archaeal and fungal communities increased. Vertical distributions of the soil microbiomes were more related to the variation in soil properties, while their horizontal distributions may be driven by a gradient effect of roots extending from the tree. Bacterial and archaeal beta-diversity were strongly related to multi-nutrient cycling in the soil, respectively, playing major roles in deep and superficial layers. Taken together, these results reveal a new perspective on the vertical and horizontal spatial variation in soil microbiomes at the fine scale of single trees. Distinct response patterns underpinned the contributions of soil bacteria, archaea, and fungi as a function of subsurface nutrient cycling during the reforestation of ex-arable land.
机译:土壤微生物体在陆地生态系统的服务和运作中发挥着重要作用。然而,众所周知它们对恢复过程的垂直反应及其对地下轮廓中的土壤养分循环的贡献。在这里,我们调查了垂直(即,0-300?cm的土壤深度)和水平(即,从30-90×cm的树木的距离)的垂直(即,从树木的距离)的群落组装在重新造林的一致性中网站超过30多年的恢复。在浅层层(0-80?cm),细菌和真菌多样性下降,而古代多样性随着土壤深度的增加而增加。随着时间的推移进行了重新造林,细菌社区的垂直空间变异降低,而在古藻和真菌社区中增加。土壤微生物的垂直分布与土壤性质的变化更有关,而它们的水平分布可以通过从树延伸的根的梯度效应驱动。细菌和古β-多样性分别与土壤中的多营养循环强烈相关,在深层和浅表层中起主要作用。总之,这些结果揭示了在单棵树精细规模的土壤微生物谱系中的垂直和水平空间变化的新视角。不同的反应模式在耕地重新造林期间,土壤细菌,古痤疮和真菌的贡献为地下养分循环。

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