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Defining the Functional Potential and Active Community Members of a Sediment Microbial Community in a High-Arctic Hypersaline Subzero Spring

机译:定义高北极超盐分零以下春季沉积物微生物群落的功能潜力和活动群落成员

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The Lost Hammer (LH) Spring is the coldest and saltiest terrestrial spring discovered to date and is characterized by perennial discharges at subzero temperatures (?5°C), hypersalinity (salinity, 24%), and reducing (≈?165 mV), microoxic, and oligotrophic conditions. It is rich in sulfates (10.0%, wt/wt), dissolved H2S/sulfides (up to 25 ppm), ammonia (≈381 μM), and methane (11.1 g day?1). To determine its total functional and genetic potential and to identify its active microbial components, we performed metagenomic analyses of the LH Spring outlet microbial community and pyrosequencing analyses of the cDNA of its 16S rRNA genes. Reads related to Cyanobacteria (19.7%), Bacteroidetes (13.3%), and Proteobacteria (6.6%) represented the dominant phyla identified among the classified sequences. Reconstruction of the enzyme pathways responsible for bacterial nitrification/denitrification/ammonification and sulfate reduction appeared nearly complete in the metagenomic data set. In the cDNA profile of the LH Spring active community, ammonia oxidizers (Thaumarchaeota), denitrifiers (Pseudomonas spp.), sulfate reducers (Desulfobulbus spp.), and other sulfur oxidizers (Thermoprotei) were present, highlighting their involvement in nitrogen and sulfur cycling. Stress response genes for adapting to cold, osmotic stress, and oxidative stress were also abundant in the metagenome. Comparison of the composition of the functional community of the LH Spring to metagenomes from other saline/subzero environments revealed a close association between the LH Spring and another Canadian high-Arctic permafrost environment, particularly in genes related to sulfur metabolism and dormancy. Overall, this study provides insights into the metabolic potential and the active microbial populations that exist in this hypersaline cryoenvironment and contributes to our understanding of microbial ecology in extreme environments.
机译:失锤(LH)春季是迄今为止发现的最冷,最咸的陆上春季,其特征是在低于零温度(?5°C)时常年排放,高盐度(盐度,24%),并且降低(≈?165 mV)。 ,微氧和贫营养条件。它富含硫酸盐(10.0%,wt / wt),溶解的H2S /硫化物(最高25 ppm),氨(≈381μM)和甲烷(11.1 g?d?1)。为了确定其总功能和遗传潜力并确定其活性微生物成分,我们对LH Spring出口微生物群落进行了宏基因组学分析,并对其16S rRNA基因的cDNA进行了焦磷酸测序分析。与蓝细菌(19.7 %),拟杆菌(13.3 %)和变形杆菌(6.6 %)相关的读物代表了在分类序列中鉴定出的优势种。在宏基因组数据集中,负责细菌硝化/反硝化/氨化和硫酸盐还原的酶途径的重建似乎已经完成。在LH Spring活性群落的cDNA图谱中,存在氨氧化剂(Thaumarchaeota),反硝化剂(Pseudomonas spp。),硫酸盐还原剂(Desulfobulbus spp。)和其他硫氧化剂(Thermoprotei),突出了它们参与氮和硫循环。在元基因组中,适应寒冷,渗透胁迫和氧化胁迫的应激反应基因也很丰富。将LH Spring的功能群落与其他盐/零以下环境的元基因组进行比较,发现LH Spring与另一个加拿大高北极多年冻土环境之间有着密切的联系,特别是在与硫代谢和休眠相关的基因中。总体而言,这项研究提供了对这种高盐冷环境中存在的代谢潜力和活性微生物种群的见解,并有助于我们了解极端环境中的微生物生态学。

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