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Multiscale responses of microbial life to spatial distance and environmental heterogeneity in a patchy ecosystem

机译:斑驳生态系统中微生物生命对空间距离和环境异质性的多尺度响应

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摘要

Spatial distance (SD) and environmental heterogeneity (EH) are currently thought to represent major factors shaping genetic variation and population abundance, but their relative importance is still poorly understood. Because EH varies at multiple spatial scales, so too are microbial variables expected to vary. The determination of SD x EH interactions at multiple scales is, however, not a trivial exercise, especially when one examines their effects on microbial abundance and genomic similarities. Here we assessed those interactions at all scales perceptible in a patchy environment composed of known plant species and of heterogeneous soil physical and chemical parameters. For free-living, soil-borne Burkholderia ambifaria. genomic similarities responded to most of the spatial scales that the experimental sampling scheme could reveal, despite limited dispersal of the individuals. Species abundance and community composition were, however, responding to much smaller scales more consistent with local responses to EH. Our results suggest that whole-genome similarities may reflect the simultaneous effects of both SD and EH in microbial populations, but the pure effects of each factor only contributed to < 2% of the total genetic variation. The large amount of unexplained variation that remains after considering most environmental, spatial, and biological interactions is then posited to be the result of noise introduced by unmeasured environmental and spatial variability, sampling effects, and neutral ecological drift.
机译:目前,人们认为空间距离(SD)和环境异质性(EH)是影响遗传变异和种群数量的主要因素,但对它们的相对重要性仍知之甚少。由于EH在多个空间尺度上变化,因此微生物变量也将变化。但是,在多个尺度上确定SD x EH相互作用并不是一件容易的事,尤其是在检查它们对微生物丰度和基因组相似性的影响时。在这里,我们评估了在由已知植物物种以及异质土壤物理和化学参数组成的斑驳环境中可以感知到的所有规模的相互作用。为了自由生活,土壤传播的伯克霍尔德菌双歧杆菌。尽管个体分布有限,但是基因组相似性对实验采样方案可以揭示的大多数空间尺度都有响应。但是,物种的丰富度和群落组成对较小尺度的响应更符合当地对EH的响应。我们的结果表明,全基因组相似性可能反映了SD和EH在微生物种群中的同时效应,但每种因素的纯效应仅占总遗传变异的<2%。在考虑了大多数环境,空间和生物相互作用之后,仍然存在大量无法解释的变化,这是由于未经测量的环境和空间可变性,采样效应以及中性生态漂移所引入的噪声的结果。

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