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Headwaters are critical reservoirs of microbial diversity for fluvial networks

机译:上游水源是河流网络中微生物多样性的重要储存库

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摘要

Streams and rivers form conspicuous networks on the Earth and are among nature's most effective integrators. Their dendritic structure reaches into the terrestrial landscape and accumulates water and sediment en route from abundant headwater streams to a single river mouth. The prevailing view over the last decades has been that biological diversity also accumulates downstream. Here, we show that this pattern does not hold for fluvial biofilms, which are the dominant mode of microbial life in streams and rivers and which fulfil critical ecosystem functions therein. Using 454 pyrosequencing on benthic biofilms from 114 streams, we found that microbial diversity decreased from headwaters downstream and especially at confluences. We suggest that the local environment and biotic interactions may modify the influence of metacommunity connectivity on local biofilm biodiversity throughout the network. In addition, there was a high degree of variability in species composition among headwater streams that could not be explained by geographical distance between catchments. This suggests that the dendritic nature of fluvial networks constrains the distributional patterns of microbial diversity similar to that of animals. Our observations highlight the contributions that headwaters make in the maintenance of microbial biodiversity in fluvial networks.
机译:溪流和河流在地球上形成明显的网络,是自然界最有效的整合者之一。它们的树突结构进入陆地景观,并在从丰富的源头水流到一条河口的途中积聚水和沉积物。在过去的几十年中,普遍的看法是生物多样性也在下游积累。在这里,我们表明,这种模式不适用于河流生物膜,而河流生物膜是河流和河流中微生物生存的主要方式,并且在其中发挥了关键的生态系统功能。使用来自114个流的底栖生物膜上的454焦磷酸测序,我们发现下游源头尤其是汇合处的微生物多样性下降。我们建议,当地环境和生物相互作用可能会修改整个社区对元社区连通性对当地生物膜生物多样性的影响。此外,上游水域的物种组成存在高度变异性,无法用集水区之间的地理距离来解释。这表明河流网络的树突状性质限制了与动物相似的微生物多样性分布模式。我们的观察结果突出了源头对维持河流网络中微生物多样性的贡献。

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