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Contrast diversity patterns and processes of microbial community assembly in a river-lake continuum across a catchment scale in northwestern China

机译:中国西北地区河湖连续鲁庭中微生物社区组装的对比度模式和过程

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Microorganisms in rivers and lakes are essential for nutrient recycling in aquatic ecosystems. Understanding the ecological processes shaping microbial communities is of crucial importance for aquatic microbial ecology and biogeography. However, the diversity of microorganisms and the forces that control this diversity are poorly understood. This is particularly true within the framework of the river-lake continuum in arid regions. Using a whole catchment-sampling effort, we explored biogeographical patterns and mechanisms of microbial community (bacteria and archaea) assembly within the catchment of the largest inland once?freshwater?lake (Lake Bosten) in China. Water samples from headstream tributaries, the mainstream of the River Kaidu to downstream Lake Bosten were characterized using amplicon sequencing of 16S rRNA genes. Higher α-diversity was found in mainstream of River Kaidu and in the tributaries compared with Lake Bosten. And the microbial community composition was also significantly different between the?lake and its connected river habitats. Canonical correspondence analysis demonstrated that salinity and total suspended solids were the most important environmental factors shaping the community variations. Overall, pure environmental and pure spatial factors explained 13.7 and 5.6% of the community variation, respectively, while 32.0% of the variation was explained by combined environmental and spatial variables. These observations suggested that spatially structured environmental variations mainly shaped the microbial biogeography in this region. Both deterministic and stochastic processes influenced the microbial community assembly in river and lake habitats, and the stochastic pattern was particularly pronounced for microbiome in river habitat. Co-occurrence network analysis revealed more abundant and complicated correlations among frequently occurred taxa in lake habitat compared with the river habitat, implying that ecological multispecies interactions (e.g., competition) shaped lake microbial community structures. Our findings demonstrate an ecological succession along the river-lake continuum of microbial communities across the largest inland once?freshwater lake basin in China, and highlight the effects of spatially structured environmental factors on regional microbial β-diversity and species interactions on local community assembly.
机译:河流和湖泊的微生物对于水生生态系统中的营养回收是必不可少的。了解塑造微生物社区的生态过程对水生微生物生态和生物地理学至关重要。然而,微生物的多样性和控制这种多样性的力量很差。在干旱地区的河湖连续鲁姆框架内尤其如此。使用整个流域采样努力,我们探讨了在最大内陆的集水区内的微生物群落(细菌和古)组装的生物地理学模式和机制?淡水?湖(波士顿湖)在中国。从脑脊前沿的水样,河边河河上游湖泊湖波斯丁的主流,用16S rRNA基因的扩增子测序表征。与波斯丁湖相比,在河杜河和支流的主流中发现了更高的α-多样性。和微生物群落组合物在湖泊和其连通的河流栖息地之间也显着差异。规范对应分析表明盐度和总悬浮固体是塑造社区变异的最重要的环境因素。总体而言,纯环境和纯空间因素分别解释了社区变异的13.7%和5.6%,而环境和空间变量组合解释了32.0%的变化。这些观察结果表明,该地区主要构成的环境变化主要是塑造了该地区的微生物生物地理。确定性和随机过程的影响影响了河流和湖泊栖息地的微生物群落组件,随机模式对河流栖息地的微生物组特别明显。与河流栖息地相比,共同发生网络分析揭示了湖泊栖息地的常常出现的分类群中的更丰富和复杂的相关性,这意味着生态多数相互作用(例如,竞争)形状的湖微生物群落结构。我们的调查结果展示了沿着全年内陆最大的小型社区的河湖连续内的生态继承?中国淡水湖盆地,并突出了空间结构环境因素对地方社区大会的区域微生物β-多样性和物种互动的影响。

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