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Plant community and soil conditions individually affect soil microbial community assembly in experimental mesocosms

机译:植物群落和土壤条件分别影响实验性中观世界中土壤微生物群落的组装

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摘要

Soils harbor large, diverse microbial communities critical for local and global ecosystem functioning that are controlled by multiple and poorly understood processes. In particular, while there is observational evidence of relationships between both biotic and abiotic conditions and microbial composition and diversity, there have been few experimental tests to determine the relative importance of these two sets of factors at local scales. Here, we report the results of a fully factorial experiment manipulating soil conditions and plant cover on old‐field mesocosms across a latitudinal gradient. The largest contributor to beta diversity was site‐to‐site variation, but, having corrected for that, we observed significant effects of both plant and soil treatments on microbial composition. Separate phyla were associated with each treatment type, and no interactions between soil and plant treatment were observed. Individual soil characteristics and biotic parameters were also associated with overall beta‐diversity patterns and phyla abundance. In contrast, soil microbial diversity was only associated with site and not experimental treatment. Overall, plant community treatment explained more variation than soil treatment, a result not previously appreciated because it is difficult to dissociate plant community composition and soil conditions in observational studies across gradients. This work highlights the need for more nuanced, multifactorial experiments in microbial ecology and in particular indicates a greater focus on relationships between plant composition and microbial composition during community assembly.
机译:土壤中蕴藏着多种多样的微生物群落,这些微生物群落对本地和全球生态系统的功能至关重要,这些微生物群落由多个且鲜为人知的过程控制。特别是,虽然有观察证据表明生物和非生物条件与微生物组成和多样性之间存在关联,但很少有实验测试来确定这两组因素在地方尺度上的相对重要性。在这里,我们报告了一个完整因子分析实验的结果,该实验对土壤条件和植物覆盖度在横向梯度上的老田间质膜进行了处理。 β多样性的最大贡献者是站点之间的差异,但对此进行了校正,我们观察到植物和土壤处理对微生物组成均具有显着影响。每种处理类型都有不同的门,并且土壤和植物处理之间没有相互作用。各个土壤的特性和生物参数也与总体β-多样性模式和门类数量相关。相反,土壤微生物多样性仅与现场相关,而与实验处理无关。总体而言,植物群落处理比土壤处理解释了更多的差异,这一结果以前没有得到认可,因为在跨梯度的观测研究中很难分解植物群落组成和土壤条件。这项工作强调了在微生物生态学中需要进行更细致入微的多因素实验的需要,特别是表明在社区组装过程中,人们更加关注植物组成与微生物组成之间的关系。

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