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Tree species identity surpasses richness in affecting soil microbial richness and community composition in subtropical forests

机译:树种身份超越丰富,影响亚热带林中土壤微生物丰富性和群落组成

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Plant interactions and feedbacks with soil microorganisms play an important role in sustaining the functions and stability of terrestrial ecosystems, yet the effects of tree species diversity on soil microbial community in forest ecosystems are still not well understood. Here, we examined the effects of tree species richness (1-12 species) and the presence of certain influential tree species (sampling effect) on soil bacterial and fungal communities in Chinese subtropical forests, using high-throughput Illumine sequencing for microbial identification. We observed that beta rather than alpha diversities of tree species and soil microorganisms were strong coupled. Multivariate regression and redundancy analyses revealed that the effects of tree species identity dominated over tree species richness on the diversity and composition of bacterial and fungal communities in both organic and top mineral soil horizons. Soil pH, nutrients and topography were always identified as significant predictors in the best multivariate models. Tree species have stronger effect on fungi than bacteria in organic soil, and on ectomycorrhizal fungi than saprotrophic fungi in mineral topsoil. Concluding, tree species identity, along with abiotic soil and topographical conditions, were more important factors determining the soil microbial communities in subtropical forests than tree diversity per se.
机译:植物相互作用与土壤微生物的反馈在维持陆地生态系统的功能和稳定性方面发挥着重要作用,但树种多样性对森林生态系统土壤微生物群落的影响仍未得到很好的理解。在此,我们研究了树种丰富性(1-12种)的影响,以及在中国亚热带森林中的土壤细菌和真菌社区中存在某些有影响的树种(取样效果),用于使用高通量阳性测序进行微生物鉴定。我们观察到β而不是α种类和土壤微生物的α多样性均是强烈的耦合。多元回归和冗余分析显示,树种身份的影响在树种中占有丰富性,对有机和顶部矿物土壤视野中的细菌和真菌社区的多样性和组成。在最佳多元模型中始终将土壤pH,营养素和地形肯定被识别为重要预测因子。树种对真菌的效果比有机土壤中的细菌,并且在矿物表土中的嗜血菌真菌患者。结论,树种形式以及非生物土壤和地形条件,更重要的是确定亚热带林中的土壤微生物社区的因素,而不是树多样性本身。

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