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Unusual metabolic diversity of hyperalkaliphilic microbial communities associated with subterranean serpentinization at The Cedars

机译:锡达斯地下蛇纹石化相关的高碱性微生物群落的异常代谢多样性

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摘要

Water from The Cedars springs that discharge from serpentinized ultramafic rocks feature highly basic (pH=~12), highly reducing (Eh<−550 mV) conditions with low ionic concentrations. These conditions make the springs exceptionally challenging for life. Here, we report the metagenomic data and recovered draft genomes from two different springs, GPS1 and BS5. GPS1, which was fed solely by a deep groundwater source within the serpentinizing system, was dominated by several bacterial taxa from the phyla OD1 (‘Parcubacteria’) and Chloroflexi. Members of the GPS1 community had, for the most part, the smallest genomes reported for their respective taxa, and encoded only archaeal (A-type) ATP synthases or no ATP synthases at all. Furthermore, none of the members encoded respiration-related genes and some of the members also did not encode key biosynthesis-related genes. In contrast, BS5, fed by shallow water, appears to have a community driven by hydrogen metabolism and was dominated by a diverse group of Proteobacteria similar to those seen in many terrestrial serpentinization sites. Our findings indicated that the harsh ultrabasic geological setting supported unexpectedly diverse microbial metabolic strategies and that the deep-water-fed springs supported a community that was remarkable in its unusual metagenomic and genomic constitution.
机译:从蛇纹石化的超镁铁质岩石中排出的雪松泉水具有高碱性(pH =〜12),低离子浓度(Eh <-550 mV)的高还原条件。这些条件使弹簧在使用寿命上格外具有挑战性。在这里,我们报告了宏基因组学数据和从两个不同的弹簧GPS1和BS5恢复的基因组草图。 GPS1仅由蛇形化系统中的深层地下水源提供,主要由门OD1和副绿弯曲菌组成。 GPS1社区的成员在大多数情况下报告的各自类群的基因组最小,并且仅编码古细菌(A型)ATP合酶,而根本不编码。此外,没有成员编码与呼吸有关的基因,并且一些成员也不编码与生物合成有关的关键基因。相比之下,由浅水喂养的BS5似乎具有受氢代谢驱动的群落,并且由与许多陆生蛇形化位点中所见相似的多种变形杆菌所主导。我们的发现表明,苛刻的超基性地质环境支持了出乎意料的多种微生物代谢策略,而深水喂养的泉水则支持了一个以其异常的宏基因组学和基因组构成而著称的社区。

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