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Single Cells within the Puerto Rico Trench Suggest Hadal Adaptation of Microbial Lineages

机译:波多黎各海沟中的单个细胞表明微生物谱系的哈德适应性。

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Hadal ecosystems are found at a depth of 6,000 m below sea level and below, occupying less than 1% of the total area of the ocean. The microbial communities and metabolic potential in these ecosystems are largely uncharacterized. Here, we present four single amplified genomes (SAGs) obtained from 8,219 m below the sea surface within the hadal ecosystem of the Puerto Rico Trench (PRT). These SAGs are derived from members of deep-sea clades, including the Thaumarchaeota and SAR11 clade, and two are related to previously isolated piezophilic (high-pressure-adapted) microorganisms. In order to identify genes that might play a role in adaptation to deep-sea environments, comparative analyses were performed with genomes from closely related shallow-water microbes. The archaeal SAG possesses genes associated with mixotrophy, including lipoylation and the glycine cleavage pathway. The SAR11 SAG encodes glycolytic enzymes previously reported to be missing from this abundant and cosmopolitan group. The other SAGs, which are related to piezophilic isolates, possess genes that may supplement energy demands through the oxidation of hydrogen or the reduction of nitrous oxide. We found evidence for potential trench-specific gene distributions, as several SAG genes were observed only in a PRT metagenome and not in shallower deep-sea metagenomes. These results illustrate new ecotype features that might perform important roles in the adaptation of microorganisms to life in hadal environments.
机译:在海平面以下和海平面以下6,000 m的深度发现了Hadal生态系统,仅占海洋总面积的不到1%。这些生态系统中的微生物群落和代谢潜能在很大程度上未被表征。在这里,我们介绍了从波多黎各海沟(PRT)的海底生态系统内海面以下8,219 m获得的四个单扩增基因组(SAG)。这些SAG源自深海进化枝成员,包括Thaumarchaeota和SAR11进化枝,其中两个与先前分离的亲嗜性微生物(高压适应)有关。为了鉴定可能在适应深海环境中起作用的基因,对来自密切相关的浅水微生物的基因组进行了比较分析。古细菌SAG具有与混合营养相关的基因,包括脂酰化和甘氨酸裂解途径。 SAR11 SAG编码以前据报道在这个丰富而国际化的群体中缺失的糖酵解酶。其他与亲嗜性分离物有关的SAG具有可以通过氢氧化或一氧化二氮还原补充能量需求的基因。我们发现了潜在的沟槽特异性基因分布的证据,因为仅在PRT元基因组中观察到了多个SAG基因,而在较浅的深海元基因组中未观察到。这些结果说明了新的生态型特征,它们可能在微生物适应环境中的生命中起重要作用。

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