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Strain-level genomic variation in natural populations of Lebetimonas from an erupting deep-sea volcano

机译:爆发的深海火山中的Lebetimonas自然种群的应变水平基因组变异

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摘要

Chemolithoautotrophic Epsilonproteobacteria are ubiquitous in sulfidic, oxygen-poor habitats, including hydrothermal vents, marine oxygen minimum zones, marine sediments and sulfidic caves and have a significant role in cycling carbon, hydrogen, nitrogen and sulfur in these environments. The isolation of diverse strains of Epsilonproteobacteria and the sequencing of their genomes have revealed that this group has the metabolic potential to occupy a wide range of niches, particularly at dynamic deep-sea hydrothermal vents. We expand on this body of work by examining the population genomics of six strains of Lebetimonas, a vent-endemic, thermophilic, hydrogen-oxidizing Epsilonproteobacterium, from a single seamount in the Mariana Arc. Using Lebetimonas as a model for anaerobic, moderately thermophilic organisms in the warm, anoxic subseafloor environment, we show that genomic content is highly conserved and that recombination is limited between closely related strains. The Lebetimonas genomes are shaped by mobile genetic elements and gene loss as well as the acquisition of novel functional genes by horizontal gene transfer, which provide the potential for adaptation and microbial speciation in the deep sea. In addition, these Lebetimonas genomes contain two operons of nitrogenase genes with different evolutionary origins. Lebetimonas expressed nifH during growth with nitrogen gas as the sole nitrogen source, thus providing the first evidence of nitrogen fixation in any Epsilonproteobacteria from deep-sea hydrothermal vents. In this study, we provide a comparative overview of the genomic potential within the Nautiliaceae as well as among more distantly related hydrothermal vent Epsilonproteobacteria to broaden our understanding of microbial adaptation and diversity in the deep sea.
机译:化肥自养的Epsilon变形杆菌在无氧的硫化物生境中普遍存在,包括热液喷口,海洋最低限氧区,海洋沉积物和硫化物洞穴,并且在这些环境中循环碳,氢,氮和硫起着重要作用。分离出多种Epsilon变形杆菌菌株并对其基因组进行测序表明,该群体具有代谢潜力,可以占据广泛的生态位,特别是在动态深海热液喷口处。我们通过研究六种Lebetimonas的种群基因组学来扩展这一工作范围,Lebetimonas是一种来自马里亚纳弧线单个海山的通风,地方性,嗜热性,氢氧化性的Epsilon变形杆菌。使用Lebetimonas作为温暖,缺氧的海底环境中厌氧,中等嗜热生物的模型,我们显示出基因组含量高度保守,并且紧密相关菌株之间的重组受到限制。 Lebetimonas的基因组是由可移动的遗传元件和基因损失以及通过水平基因转移获得新功能基因而形成的,这为深海的适应和微生物形成提供了潜力。此外,这些Lebetimonas基因组包含两个具有不同进化起源的氮酶基因操纵子。 Lebetimonas在生长过程中以氮气作为唯一的氮源表达了nifH,因此提供了来自深海热液喷口的任何Epsilon变形杆菌中固氮的第一个证据。在这项研究中,我们提供了鹦鹉螺科以及远缘相关的热液喷口Epsilon变形杆菌中基因组潜力的比较概述,以拓宽我们对深海微生物适应性和多样性的理解。

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