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Deciphering biodiversity and interactions between bacteria and microeukaryotes within epilithic biofilms from the Loue River France

机译:法国卢埃河上层生物膜中生物多样性的研究以及细菌与微真核生物之间的相互作用

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摘要

Epilithic river biofilms are complex matrix-enclosed communities harboring a great diversity of prokaryotic and eukaryotic microorganisms. Interactions between these communities and the relative impacts of environmental factors on their compositions are poorly understood. In this study, we assessed the spatio-temporal variation in the diversity and composition of bacterial and microeukaryotic communities within biofilms in a French river. Significant changes were found in the composition of these microbial communities over the sampling period and between the upstream and downstream stations. In addition, the beta diversity of the bacterial community tended to decrease along the river, mostly as a result of turnover. These changes could be caused by the different water temperatures and geological and hydrological river contexts at the sampling sites (from karst landscape to river plain). Finally, our network analysis showed multiple correlations among dominant OTUs. Among them, negative correlations between Rhodobacteraceae and two other dominant groups of photosynthetic microorganisms (cyanobacteria and diatoms) were particularly interesting, which raises the question of what environmental factors trigger the changes occurring in benthic microbial photosynthetic communities.
机译:上石器时代的生物膜是复杂的,由基质封闭的社区,具有多种多样的原核和真核微生物。这些社区之间的相互作用以及环境因素对其构成的相对影响知之甚少。在这项研究中,我们评估了法国河流生物膜内细菌和微真核生物群落的多样性和组成的时空变化。在采样期间以及上游站和下游站之间,这些微生物群落的组成发生了显着变化。此外,沿河的细菌群落的β多样性趋于下降,这主要是由于营业额的增加。这些变化可能是由于采样地点(从喀斯特地貌到河川平原)不同的水温和地质和水文河流环境造成的。最后,我们的网络分析表明,主要OTU之间存在多种相关性。其中,红细菌科与其他两个主要的光合微生物(蓝藻和硅藻)之间的负相关尤其令人感兴趣,这引起了一个问题,即哪些环境因素触发了底栖微生物光合社区发生的变化。

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