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Expansive microbial metabolic versatility and biodiversity in dynamic Guaymas Basin hydrothermal sediments

机译:瓜亚马斯盆地热液沉积物中微生物的代谢多样性和生物多样性

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Microbes in Guaymas Basin (Gulf of California) hydrothermal sediments thrive on hydrocarbons and sulfur and experience steep, fluctuating temperature and chemical gradients. The functional capacities of communities inhabiting this dynamic habitat are largely unknown. Here, we reconstructed 551 genomes from hydrothermally influenced, and nearby cold sediments belonging to 56 phyla (40 uncultured). These genomes comprise 22 unique lineages, including five new candidate phyla. In contrast to findings from cold hydrocarbon seeps, hydrothermal-associated communities are more diverse and archaea dominate over bacteria. Genome-based metabolic inferences provide first insights into the ecological niches of these uncultured microbes, including methane cycling in new Crenarchaeota and alkane utilization in ANME-1. These communities are shaped by a high biodiversity, partitioning among nitrogen and sulfur pathways and redundancy in core carbon-processing pathways. The dynamic sediments select for distinctive microbial communities that stand out by expansive biodiversity, and open up new physiological perspectives into hydrothermal ecosystem function.
机译:瓜伊马斯盆地(加利福尼亚湾)的热液沉积物中的微生物在碳氢化合物和硫磺​​上壮成长,并经历陡峭的,波动的温度和化学梯度。居住在这个动态栖息地的社区的功能能力在很大程度上是未知的。在这里,我们从热液影响下重建了551个基因组,附近的冷沉积物属于56个门(40个未耕种)。这些基因组包含22个独特的谱系,包括五个新的候选门。与冷烃渗出的发现相反,与热液有关的群落更加多样,古细菌在细菌中占主导地位。基于基因组的代谢推断提供了对这些未培养微生物的生态位的初步见解,包括新Crenarchaeota中的甲烷循环和ANME-1中的烷烃利用。这些社区是由高度生物多样性,氮和硫途径之间的分配以及核心碳加工途径中的冗余构成的。动态沉积物选择了在广阔的生物多样性中脱颖而出的独特微生物群落,并为热液生态系统功能开辟了新的生理学视野。

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