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Bacterial Microbiota Associated with the Glacier Ice Worm Is Dominated by Both Worm-Specific and Glacier-Derived Facultative Lineages

机译:与细菌冰蠕虫相关的细菌菌群主要由蠕虫特异性和冰川衍生的兼系谱系主导

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摘要

The community structure of bacteria associated with the glacier ice worm Mesenchytraeus solifugus was analyzed by amplicon sequencing of 16S rRNA genes and their transcripts. Ice worms were collected from two distinct glaciers in Alaska, Harding Icefield and Byron Glacier, and glacier surfaces were also sampled for comparison. Marked differences were observed in bacterial community structures between the ice worm and glacier surface samples. Several bacterial phylotypes were detected almost exclusively in the ice worms, and these bacteria were phylogenetically affiliated with either animal-associated lineages or, interestingly, clades mostly consisting of glacier-indigenous species. The former included bacteria that belong to Mollicutes, Chlamydiae, Rickettsiales, and Lachnospiraceae, while the latter included Arcicella and Herminiimonas phylotypes. Among these bacteria enriched in ice worm samples, Mollicutes, Arcicella, and Herminiimonas phylotypes were abundantly and consistently detected in the ice worm samples; these phylotypes constituted the core microbiota associated with the ice worm. A fluorescence in situ hybridization analysis showed that Arcicella cells specifically colonized the epidermis of the ice worms. Other bacterial phylotypes detected in the ice worm samples were also abundantly recovered from the respective habitat glaciers; these bacteria may be food for ice worms to digest or temporary residents. Nevertheless, some were overrepresented in the ice worm RNA samples; they may also function as facultative gut bacteria. Our results indicate that the community structure of bacteria associated with ice worms is distinct from that in the associated glacier and includes worm-specific and facultative, glacier-indigenous lineages.
机译:通过对16S rRNA基因及其转录本进行扩增子测序,分析了与冰川蠕虫Mesenchytraeus solifugus有关的细菌群落结构。从阿拉斯加的两个不同的冰川哈丁冰原和拜伦冰川收集了冰虫,还对冰川表面进行了采样以进行比较。在冰蠕虫和冰川表面样本之间的细菌群落结构中观察到明显差异。在冰虫中几乎仅检测到几种细菌系统型,这些细菌在系统发育上与动物相关的谱系有关,或者有趣的是,进化枝主要由冰川土著种组成。前者包括属于Mollicutes,衣原体,立克次体和唇形科的细菌,而后者则包括Arcicella和Herminiimonas系统型。在这些富含冰蠕虫样品的细菌中,在冰蠕虫样品中大量,一致地检测到了Mollicutes,Arcicella和Herminiimonas的系统型。这些系统型构成了与蠕虫相关的核心微生物群。荧光原位杂交分析表明,Arcicella细胞特异地定居在冰虫的表皮上。在冰蠕虫样本中检测到的其他细菌系统型也从各自的栖息地冰川中大量回收。这些细菌可能是蠕虫消化或暂时居住的食物。然而,有些在冰虫RNA样品中含量过高。它们也可能起兼性肠道细菌的作用。我们的结果表明,与冰虫相关的细菌的群落结构不同于相关冰川中的细菌,并且包括蠕虫特异性和兼性的冰川土著血统。

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