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Characterization of soil microbes associated with a grazing‐tolerant grass species, Stipa breviflora, in the Inner Mongolian desert steppe

机译:与放牧宽容草地相关的土壤微生物的表征,在内蒙古沙漠草原中,Stipa Breviflora。

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Although soil microbial communities are central in ecosystem functioning, we know little of their characterization for those associated with grazing‐tolerant host plant species in grassland ecosystems in response to grazing. In this study, we used a high‐throughput sequencing approach to characterize soil microbes from the rhizosphere and bulk soil of grazing‐tolerant grass species, Stipa breviflora, in the Inner Mongolian desert steppe. We found that response mechanisms of soil bacteria distinct from fungal communities, and variance also occur between the rhizosphere and bulk soil communities under long‐term grazing. Soil fungal communities and the co‐occurrence networks in S. breviflora rhizosphere were more sensitive to long‐term grazing than bacteria. We reveal that rhizosphere effects and soil water content were the main drivers of the changes in fungal communities and their co‐occurrence networks. Moreover, the dominant bacterial phyla Bacteroidetes and Proteobacteria and fungal phyla Ascomycota and Glomeromycota might participate in regulating processes of S. breviflora's response to grazing. Overall, these findings give new snapshots of mechanisms of how grazing affects soil microbial communities, in an attempt to contribute to a clearer understanding of grazing‐tolerant mechanism of S. breviflora.
机译:虽然土壤微生物社区在生态系统中是中央功能,但我们对与草原生态系统中的放牧宿主植物物种相关的人的表征很小,以应对放牧。在这项研究中,我们使用了高通量测序方法来表征来自宽容的草地的根际和散装土壤的土壤微生物,在内蒙古沙漠草原中的耐放牧般的草地,Stipa Breviflora。我们发现,在长期放牧下,根际和散装土壤社区之间存在不同的土壤细菌的响应机制以及变异性也会发生。土壤真菌社区和S.Breviflora根际的共发生网络对长期放牧比细菌更敏感。我们揭示了根际效应和土壤含水量是真菌社区变化的主要驱动因素及其共同发生网络。此外,显性细菌植物植物和促菌和真菌磷酸肌菌和肾小球霉菌可能参与调节S.Breviflora对放牧的反应的调节过程。总体而言,这些发现提供了雷泽如何影响土壤微生物群群的机制新的快照,以便有助于更清楚地了解S. Breviflora的放牧机制。

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