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More closely related species are more ecologically similar in an experimental test

机译:在实验测试中,关系更密切的物种在生态上更相似

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The relationship between phylogenetic distance and ecological similarity is key to understanding mechanisms of community assembly, a central goal of ecology. The field of community phylo-genetics uses phylogenetic information to infer mechanisms of community assembly; we explore, the underlying relationship between phylogenetic similarity and the niche. We combined a field experiment using 32 native plant species with a molecular phylog-eny and found that closely related plant species shared similar germination and early survival niches. Species also competed more with close relatives than with distant relatives in field soils; however, in potting soil this pattern reversed, and close relatives might even have more mutalistic relationships than distant relatives in these soils. Our results suggest that niche conservatism (habitat filtering) and species interactions (competition or facilitation) structure community composition, that phylogenetic relationships influence the strength of species' interactions, and that conserved aspects of plant niches include soil attributes.
机译:系统发育距离与生态相似性之间的关系是理解社区聚集机制的关键,而社区聚集机制是生态学的中心目标。社区系统遗传学领域利用系统发育信息来推断社区聚集的机制。我们探讨了系统相似性和生态位之间的潜在关系。我们结合了使用32种天然植物物种和分子phylog-eny进行的田间试验,发现紧密相关的植物物种具有相似的发芽和早期生存能力。在田间土壤中,物种与近亲的竞争比远亲的竞争要多。但是,在盆栽土壤中,这种模式发生了逆转,在这些土壤中,近亲甚至比远亲具有更多的亲缘关系。我们的结果表明,生态位保守性(栖息地过滤)和物种相互作用(竞争或促进)构成群落组成,系统发育关系影响物种相互作用的强度,植物生态位的保守方面包括土壤属性。

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