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Reconstruction of the Functional Ecosystem in the High Light Low Temperature Union Glacier Region Antarctica

机译:南极高光低温联合冰川地区功能生态系统的重建

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摘要

Antarctica is covered by multiple larger glaciers with diverse extreme conditions. Microorganisms in Antarctic regions are primarily responsible for diverse biogeochemical processes. The identity and functionality of microorganisms from polar glaciers are defined. However, little is known about microbial communities from the high elevation glaciers. The Union Glacier, located in the inland of West Antarctica at 79°S, is a challenging environment for life to survive due to the high irradiance and low temperatures. Here, soil and rock samples were obtained from three high mountains (Rossman Cove, Charles Peak, and Elephant Head) adjacent to the Union Glacier. Using metagenomic analyses, the functional microbial ecosystem was analyzed through the reconstruction of carbon, nitrogen and sulfur metabolic pathways. A low biomass but diverse microbial community was found. Although archaea were detected, bacteria were dominant. Taxa responsible for carbon fixation were comprised of photoautotrophs (Cyanobacteria) and chemoautotrophs (mainly Alphaproteobacterial clades: Bradyrhizobium, Sphingopyxis, and Nitrobacter). The main nitrogen fixation taxa were Halothece (Cyanobacteria), Methyloversatilis, and Leptothrix (Betaproteobacteria). Diverse sulfide-oxidizing and sulfate-reducing bacteria, fermenters, denitrifying microbes, methanogens, and methane oxidizers were also found. Putative producers provide organic carbon and nitrogen for the growth of other heterotrophic microbes. In the biogeochemical pathways, assimilation and mineralization of organic compounds were the dominant processes. Besides, a range of metabolic pathways and genes related to high irradiance, low temperature and other stress adaptations were detected, which indicate that the microbial communities had adapted to and could survive in this harsh environment. These results provide a detailed perspective of the microbial functional ecology of the Union Glacier area and improve our understanding of linkages between microbial communities and biogeochemical cycling in high Antarctic ecosystems.
机译:南极洲被多个具有各种极端条件的较大冰川覆盖。南极地区的微生物主要负责各种生物地球化学过程。定义了来自极地冰川的微生物的身份和功能。但是,对于高海拔冰川的微生物群落知之甚少。联合冰川位于南极洲内陆,温度为79°S,由于辐射强度高和温度低,对生存的生存环境构成了挑战。在这里,土壤和岩石样品是从与联合冰川相邻的三座高山(罗斯曼湾,查尔斯峰和大象头)获得的。使用宏基因组分析,通过重建碳,氮和硫代谢途径来分析功能性微生物生态系统。发现了低生物量但多样化的微生物群落。尽管检测到古细菌,但细菌占主导地位。负责碳固定的类群包括光合自养生物(蓝藻)和化学自养生物(主要是阿尔法变形细菌进化枝:缓生根瘤菌,Sphingopyxis和硝化细菌)。主要固氮类群是Halothece(蓝藻细菌),Methyloversatilis和Leptothrix(Betaproteobacteria)。还发现了多种硫化物和硫酸盐还原细菌,发酵罐,反硝化微生物,产甲烷菌和甲烷氧化剂。推定的生产者为其他异养微生物的生长提供有机碳和氮。在生物地球化学途径中,有机化合物的同化和矿化是主要过程。此外,还检测到了一系列与高辐照度,低温和其他胁迫适应有关的代谢途径和基因,这表明微生物群落已经适应并可以在这种恶劣的环境中生存。这些结果为联合冰川地区的微生物功能生态学提供了详细的观点,并增进了我们对南极生态系统中微生物群落与生物地球化学循环之间联系的理解。

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