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Experimentally induced habitat filtering in marine bacterial communities

机译:实验诱导的海洋细菌群落中的栖息地过滤

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摘要

We tested the habitat filtering hypothesis by measuring the phylogenetic structure in marine bacterial communities before and after experimentally induced stress. The habitat filtering hypothesis predicts that phylogenetic clustering (mean relatedness) should increase as the environment becomes suitable for only a subset of the original community. We show that community composition and phylogenetic structure were considerably changed with changes in salinity and dissolved organic carbon. Community composition showed no consistent patterns, while the phylogenetic relatedness between species consistently increased with treatment. We have no information about species interactions in our system, but the phylogenetic signal is strong enough to suggest that habitat filtering is the dominant assembly process. Our results support the hypothesis that habitat characteristics and environmental stress can 'filter' a community so that only closely related species can persist. This non-random phylogenetic signal also implies a relationship between ecologically relevant characteristics and species relatedness.
机译:我们通过测量实验性胁迫前后海洋细菌群落的系统发育结构,测试了栖息地过滤假说。栖息地过滤假说预测,随着环境变得仅适合原始社区的一部分,系统发育聚类(均值相关性)应该会增加。我们显示,随着盐度和溶解有机碳的变化,群落组成和系统发育结构发生了显着变化。群落组成没有显示出一致的模式,而物种之间的系统发育相关性则随着治疗而不断增加。我们没有关于系统中物种相互作用的信息,但系统发生信号足够强,表明栖息地过滤是主要的组装过程。我们的结果支持以下假设:栖息地特征和环境压力可以“过滤”一个群落,因此只有密切相关的物种才能持续存在。这种非随机的系统发育信号还暗示了生态相关特征与物种相关性之间的关系。

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