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雅鲁藏布江中游地区海拔梯度上真核微生物的分布模式和群落组装过程。

Distribution patterns and community assembly processes of eukaryotic microorganisms along an altitudinal gradient in the middle reaches of the Yarlung Zangbo River.

机构信息

Laboratory of Wetland and Watershed Ecosystems of Tibetan Plateau, School of Ecology and Environment, Tibet University, Lhasa 850000, China; Center for Carbon Neutrality in the Third Pole of the Earth, Tibet University, Lhasa 850000, China.

Laboratory of Wetland and Watershed Ecosystems of Tibetan Plateau, School of Ecology and Environment, Tibet University, Lhasa 850000, China; Center for Carbon Neutrality in the Third Pole of the Earth, Tibet University, Lhasa 850000, China.

出版信息

Water Res. 2023 Jul 1;239:120047. doi: 10.1016/j.watres.2023.120047. Epub 2023 May 4.

Abstract

Eukaryotic microorganisms play an important role in the biogeochemical cycles of rivers. Dynamic hydrological processes in rivers are thought to influence the assembly processes of eukaryotic microbes, as well as affecting local geomorphology. These processes have not been extensively studied for eukaryotic river microbes in extreme environments on the Tibetan Plateau. This study used 18S rDNA gene amplification sequencing, a neutral community model, and a null model to analyze the spatial and temporal dynamics and assembly processes of eukaryotic microbial communities in the middle reaches of the Yarlung Zangbo River. We conducted analyses across wet and dry seasons, as well as varying altitudinal gradients. Our results showed that the diversity, structure, and taxonomic composition of eukaryotic microbial communities varied more with altitude than season, and the diversity of the communities first increased, then decreased, with increasing elevation. Distance-decay analysis showed that the correlation between eukaryotic microbial communities and environmental distance was stronger than the correlation between the microbial communities and geographical distance. Deterministic processes (homogeneous selection) dominated the construction of eukaryotic microbial communities, and water temperature, pH, and total phosphorus were the primary environmental factors that influenced the construction of eukaryotic microbial communities. These results expand our understanding of the characteristics of eukaryotic microbial communities in rivers on the Tibetan Plateau and provide clues to understanding the mechanisms that maintain eukaryotic microbial diversity in extreme environments.

摘要

真核微生物在河流的生物地球化学循环中起着重要作用。人们认为河流的动态水文过程会影响真核微生物的组装过程,并影响当地的地貌。然而,对于青藏高原极端环境中的真核河流微生物,这些过程尚未得到广泛研究。本研究采用 18S rDNA 基因扩增测序、中性群落模型和零模型,分析了雅鲁藏布江中游真核微生物群落的时空动态和组装过程。我们在干湿季节以及不同海拔梯度上进行了分析。结果表明,真核微生物群落的多样性、结构和分类组成随海拔的变化大于季节的变化,群落的多样性随海拔的升高先增加后减少。距离衰减分析表明,真核微生物群落与环境距离的相关性强于与地理距离的相关性。确定性过程(均匀选择)主导了真核微生物群落的构建,而水温、pH 值和总磷是影响真核微生物群落构建的主要环境因素。这些结果扩展了我们对青藏高原河流真核微生物群落特征的认识,并为理解在极端环境中维持真核微生物多样性的机制提供了线索。

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