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首页> 外文期刊>Soil Biology & Biochemistry >Higher spatial than seasonal variation in floodplain soil eukaryotic microbial communities
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Higher spatial than seasonal variation in floodplain soil eukaryotic microbial communities

机译:比洪泛区土壤真核微生物群落的季节变异更高的空间

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摘要

Beta diversity is a key component of biodiversity with implications ranging from species dynamics to ecosystem functioning. However, beta-diversity and its drivers have received little attention, especially for micro-eukaryotes which play key roles in soil functioning. We studied the diversity of soil micro-eukaryotes in a Swiss lowland floodplain using high-throughput Illumina sequencing of soil DNA. We determined the temporal vs. spatial patterns of soil micro-eukaryotic alpha- and beta-diversity in six contrasted habitats sampled over one year. We identified the drivers of these patterns among soil conditions and functions and identified indicator taxa of habitats in each season. We found higher spatial than temporal variability and a strong space-time interaction in soil microeukaryotic diversity patterns as well as in their edaphic drivers, which contrasts with previous observation of bacterial diversity patterns. Our results show that, although soil micro-eukaryotic diversity indeed varies seasonally, it is correlated most strongly with edaphic variables and vegetation but the strength of correlations with individual drivers varied seasonally. Microbial diversity patterns and their drivers can thus differ quite substantially among seasons and taxa. Despite the dominance of spatial patterns, the temporal component of microbial diversity should not be ignored to accurately estimate the diversity and the complexity of soil microbial community assembly processes. Given the importance of soil microbial diversity for ecosystem functioning such knowledge is relevant for land management.
机译:Beta多样性是生物多样性的关键组成部分,其含义从物种动态到生态系统运作。然而,β-多样性及其司机已经收到了很少的关注,特别是对于在土壤运作中发挥关键作用的微真核生物。我们研究了使用土壤DNA的高通量illumina序列的瑞士低地洪泛区土壤微真核生物的多样性。我们确定了六个对比的栖息地的土壤微真核α-和β多样性的时间与空间模式。我们确定了土壤条件和职能中这些模式的驱动因素,并确定了每个季节的栖息地指标。我们发现比时间变异更高的空间,以及土壤微核核酸多样性模式以及其助理司机的强大时空相互作用,与先前观察细菌多样性模式形成鲜明对比。我们的研究结果表明,虽然土壤微真核多样性确实季节性变化,但它与仿柴术变量和植被相关,但与各个司机的相关强度季节性变化。因此,微生物多样性模式和其司机在季节和分类群中可以大幅不同。尽管空间模式的主导地位,但不应忽视微生物多样性的时间成分,以准确估计土壤微生物群落组装过程的多样性和复杂性。鉴于土壤微生物多样性对生态系统的重要性,所以这些知识与土地管理有关。

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