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Upstream Freshwater and Terrestrial Sources Are Differentially Reflected in the Bacterial Community Structure along a Small Arctic River and Its Estuary

机译:在北极小河及其河口的细菌群落结构中上游淡水和陆源有不同的反映。

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摘要

Glacier melting and altered precipitation patterns influence Arctic freshwater and coastal ecosystems. Arctic rivers are central to Arctic water ecosystems by linking glacier meltwaters and precipitation with the ocean through transport of particulate matter and microorganisms. However, the impact of different water sources on the microbial communities in Arctic rivers and estuaries remains unknown. In this study we used 16S rRNA gene amplicon sequencing to assess a small river and its estuary on the Disko Island, West Greenland (69°N). Samples were taken in August when there is maximum precipitation and temperatures are high in the Disko Bay area. We describe the bacterial community through a river into the estuary, including communities originating in a glacier and a proglacial lake. Our results show that water from the glacier and lake transports distinct communities into the river in terms of diversity and community composition. Bacteria of terrestrial origin were among the dominating OTUs in the main river, while the glacier and lake supplied the river with water containing fewer terrestrial organisms. Also, more psychrophilic taxa were found in the community supplied by the lake. At the river mouth, the presence of dominant bacterial taxa from the lake and glacier was unnoticeable, but these taxa increased their abundances again further into the estuary. On average 23% of the estuary community consisted of indicator OTUs from different sites along the river. Environmental variables showed only weak correlations with community composition, suggesting that hydrology largely influences the observed patterns.
机译:冰川融化和降水方式的变化会影响北极的淡水和沿海生态系统。北极河流通过将冰川融水和降水通过颗粒物质和微生物的运输与海洋联系起来,成为北极水生态系统的中心。但是,不同水源对北极河流和河口微生物群落的影响仍然未知。在这项研究中,我们使用16S rRNA基因扩增子测序来评估西格陵兰岛迪斯科岛(北纬69°)上的一条小河及其河口。在Disko湾地区最大的降水量和最高的温度于8月采样。我们描述了一条进入河口的河流中的细菌群落,包括起源于冰川和冰川湖的群落。我们的研究结果表明,冰川和湖泊的水在多样性和群落组成方面将不同的群落带入河流。陆生细菌是主要河流中主要的OTU之一,而冰川和湖泊为河流提供的陆生生物较少。另外,在该湖提供的社区中发现了更多的嗜冷类群。在河口,湖泊和冰川中主要的细菌类群的存在并不明显,但是这些类群又进一步增加了其进入河口的数量。河口社区平均有23%由沿河不同地点的指示性OTU组成。环境变量仅显示出与群落组成的弱相关性,表明水文学在很大程度上影响了观测到的模式。

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