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Microbial Communities and Chemosynthesis in Yellowstone Lake Sublacustrine Hydrothermal Vent Waters

机译:黄石湖湖底热液排放水域微生物群落及化学合成

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摘要

Five sublacustrine thermal spring locations from 1 to 109 m water depth in Yellowstone Lake were surveyed by 16S ribosomal RNA gene sequencing in relation to their chemical composition and dark CO2 fixation rates. They harbor distinct chemosynthetic bacterial communities, depending on temperature (16–110°C) and electron donor supply (H2S <1 to >100 μM; NH3 <0.5 to >10 μM). Members of the Aquificales, most closely affiliated with the genus Sulfurihydrogenibium, are the most frequently recovered bacterial 16S rRNA gene phylotypes in the hottest samples; the detection of these thermophilic sulfur-oxidizing autotrophs coincided with maximal dark CO2 fixation rates reaching near 9 μM C h−1 at temperatures of 50–60°C. Vents at lower temperatures yielded mostly phylotypes related to the mesophilic gammaproteobacterial sulfur oxidizer Thiovirga. In contrast, cool vent water with low chemosynthetic activity yielded predominantly phylotypes related to freshwater Actinobacterial clusters with a cosmopolitan distribution.
机译:通过16S核糖体RNA基因测序,对黄石湖水深1至109 m的5个湖底温泉位置进行了化学成分和暗CO2固定率的调查。它们具有不同的化学合成细菌群落,具体取决于温度(16–110°C)和电子供体供应(H2S <1至> 100μM; NH3 <0.5至> 10μM)。 Aquificales的成员与Sulfurihydrogeniumium属最密切相关,是最热的样品中回收率最高的细菌16S rRNA基因系统型。在50–60°C的温度下,检测这些嗜热硫氧化自养生物的同时,最大的深色CO2固定率接近9nearμMC h -1 。在较低温度下的通风孔产生的大多数系统型与嗜温γ-蛋白细菌硫氧化剂Thiovirga有关。相反,化学合成活性较低的凉爽通风水主要产生与大都会分布的淡水放线菌群有关的系统型。

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