首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Evaluating community-environment relationships along fine to broad taxonomic resolutions reveals evolutionary forces underlying community assembly
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Evaluating community-environment relationships along fine to broad taxonomic resolutions reveals evolutionary forces underlying community assembly

机译:根据精细至广泛的生物分类学分辨率评估社区与环境的关系,揭示了社区聚集背后的进化力量

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We propose a method for detecting evolutionary forces underlying community assembly by quantifying the strength of community-environment relationships hierarchically along taxonomic ranks. This approach explores the potential role of phylogenetic conservatism on habitat preferences: wherein, phylogenetically related taxa are expected to exhibit similar environmental responses. Thus, when niches are conserved, broader taxonomic classification should not diminish the strength of community-environment relationships and may even yield stronger associations by summarizing occurrences and abundances of ecologically equivalent finely resolved taxa. In contrast, broader taxonomic classification should weaken community-environment relationships when niches are under great divergence (that is, by combining finer taxa with distinct environmental responses). Here, we quantified the strength of community-environment relationships using distance-based redundancy analysis, focusing on soil and seawater prokaryotic communities. We considered eight case studies (covering a variety of sampling scales and sequencing strategies) and found that the variation in community composition explained by environmental factors either increased or remained constant with broadening taxonomic resolution from species to order or even phylum level. These results support the niche conservatism hypothesis and indicate that broadening taxonomic resolution may strengthen niche-related signals by removing uncertainty in quantifying spatiotemporal distributions of finely resolved taxa, reinforcing the current notion of ecological coherence in deep prokaryotic branches.
机译:我们提出了一种方法,该方法通过沿分类等级对社区与环境之间关系的强度进行量化来检测社区聚集背后的进化力。该方法探讨了系统进化保守性对栖息地偏好的潜在作用:其中,系统发育相关的分类单元有望表现出相似的环境响应。因此,当生态位得到保护时,更广泛的分类学分类不应削弱社区与环境的关系,甚至可以通过汇总生态等效的精细分类群的发生和丰富来产生更强的关联。相反,当利基处于巨大差异时(即,通过将更精细的分类单元与独特的环境响应相结合),更广泛的分类学分类应削弱社区与环境的关系。在这里,我们使用基于距离的冗余分析来量化社区与环境之间关系的强度,重点是土壤和海水原核生物群落。我们考虑了八个案例研究(涵盖了各种采样规模和测序策略),发现随着环境分类学从物种到有序甚至门类的范围扩大,由环境因素解释的群落组成变化要么增加或保持恒定。这些结果支持生态位保守性假说,并表明扩大分类学分辨率可能会通过消除量化精细分辨的分类单元的时空分布的不确定性来加强与生态位相关的信号,从而加强当前深原核生物分支中生态一致性的概念。

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