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首页> 外文期刊>FEMS Microbiology Ecology >Prokaryotic assemblages in suspended and subglacial sediments within a glacierized catchment on Qeqertarsuaq (Disko Island), west Greenland
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Prokaryotic assemblages in suspended and subglacial sediments within a glacierized catchment on Qeqertarsuaq (Disko Island), west Greenland

机译:在西格陵兰省QEQERTARSUAQ(Disko Island)的冰川化集群中的悬浮和沉积物的原核组合

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Microbes transported by glacial meltwater streams are thought to be a product of passive dispersal from both supra-and subglacial sources, though studies investigating the origins of these assemblages are scarce. Here, we conducted a survey within a large catchment containing multiple glaciers on Qeqertarsuaq (Disko Island), west Greenland, to investigate whether meltwater-exported microbial assemblages in suspended sediments differ between glacial meltwater streams, and if they reflect corresponding bulk subglacial and extraglacial sediment communities. Using 16S rRNA gene amplicon sequencing, we found proglacial stream assemblages substantially differ from one another, despite their close spatial proximity. Furthermore, proglacial stream assemblages were composed of greater proportions of Cyanobacteria compared to bulk subglacial sediment communities, dominated by Betaproteobacteria, demonstrating large contributions of meltwater and microbial cells from supraglacial habitats. Corresponding physico-chemical characteristics of meltwater suggest that streams draining smaller glaciers had more equal contributions of both supra-and subglacial inputs compared with the main catchment outlet, aligning with observed changes in assemblage structure, such as the decreased proportion of Cyanobacteria. These results suggest that glacier size and hydrological drainage systems may influence the structure of exported microbial assemblages, and collectively provide insights into their formation and fate in this current age of deglaciation.
机译:通过冰川熔融水流运输的微生物被认为是来自Supra和沉淀来源的被动分散的产物,尽管研究了这些组件的起源的研究是稀缺的。在这里,我们在一个大型集水区内进行了一项调查,其中包括Qeqertarsuaq(Disko Island),西格陵兰岛的多个冰川,探讨悬浮沉积物中的熔融潜水出口的微生物组装是否有所不同,以及反映相应的散装沉积物和抗校长沉积物社区。使用16S rRNA基因扩增子测序,我们发现ProGlacial流组件尽管它们紧密的空间接近,但是彼此的不同之处在一起。此外,与由BetapRoteobacteria主导的散装沉积物群群相比,Prooglacial流组合由植物沉积物社区的比较增加,展示了来自Supraglacial栖息地的熔融和微生物细胞的大贡献。相应的Meltwater的物理化学特性表明,与主要集水区出口相比,排出较小冰川的溪流与副出口相比具有更平等的贡献,与主要集水区的变化相比,例如降低的蓝细菌的比例。这些结果表明,冰川尺寸和水文引流系统可能影响出口的微生物组合的结构,并集体在本前令人难点时代的年龄中集体提供对其形成和命运的洞察。

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