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首页> 外文期刊>Applied Microbiology >“Candidatus Desulfobulbus rimicarensis,” an Uncultivated Deltaproteobacterial Epibiont from the Deep-Sea Hydrothermal Vent Shrimp Rimicaris exoculata
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“Candidatus Desulfobulbus rimicarensis,” an Uncultivated Deltaproteobacterial Epibiont from the Deep-Sea Hydrothermal Vent Shrimp Rimicaris exoculata

机译:“Candidatus desurofobulbus rimicarensis”,来自深海水热通风虾rimicaris exoculata的未开发的deltaprooteobacterial emibiont

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The deep-sea hydrothermal vent shrimp Rimicaris exoculata largely depends on a dense epibiotic chemoautotrophic bacterial community within its enlarged cephalothoracic chamber. However, our understanding of shrimp-bacterium interactions is limited. In this report, we focused on the deltaproteobacterial epibiont of R. exoculata from the relatively unexplored South Mid-Atlantic Ridge. A nearly complete genome of a Deltaproteobacteria epibiont was binned from the assembled metagenome. Whole-genome phylogenetic analysis reveals that it is affiliated with the genus Desulfobulbus , representing a potential novel species for which the name “ Candidatus Desulfobulbus rimicarensis” is proposed. Genomic and transcriptomic analyses reveal that this bacterium utilizes the Wood-Ljungdahl pathway for carbon assimilation and harvests energy via sulfur disproportionation, which is significantly different from other shrimp epibionts. Additionally, this epibiont has putative nitrogen fixation activity, but it is extremely active in directly taking up ammonia and urea from the host or vent environments. Moreover, the epibiont could be distinguished from its free-living relatives by various features, such as the lack of chemotaxis and motility traits, a dramatic reduction in biosynthesis genes for capsular and extracellular polysaccharides, enrichment of genes required for carbon fixation and sulfur metabolism, and resistance to environmental toxins. Our study highlights the unique role and symbiotic adaptation of Deltaproteobacteria in deep-sea hydrothermal vent shrimps.IMPORTANCE The shrimp Rimicaris exoculata represents the dominant faunal biomass at many deep-sea hydrothermal vent ecosystems along the Mid-Atlantic Ridge. This organism harbors dense bacterial epibiont communities in its enlarged cephalothoracic chamber that play an important nutritional role. Deltaproteobacteria are ubiquitous in epibiotic communities of R. exoculata , and their functional roles as epibionts are based solely on the presence of functional genes. Here, we describe “ Candidatus Desulfobulbus rimicarensis,” an uncultivated deltaproteobacterial epibiont. Compared to campylobacterial and gammaproteobacterial epibionts of R. exoculata , this bacterium possessed unique metabolic pathways, such as the Wood-Ljungdahl pathway, as well as sulfur disproportionation and nitrogen fixation pathways. Furthermore, this epibiont can be distinguished from closely related free-living Desulfobulbus strains by its reduced genetic content and potential loss of functions, suggesting unique adaptations to the shrimp host. This study is a genomic and transcriptomic analysis of a deltaproteobacterial epibiont and largely expands the understanding of its metabolism and adaptation to the R. exoculata host.
机译:深海水热通风虾rimicaris exoculata大部分取决于其在其扩大的头部植物室内的致密钝化化学植物细菌群体。然而,我们对虾细菌相互作用的理解有限。在本报告中,我们专注于R. exoculata的Deltaproteobacterial emibion​​t从相对未探索的南部大西洋山脊。从组装的梅塔蛋白组中填充了迄今为止的迄今为止的近似完整的基因组。全基因组系统发育分析表明,它与脱硫属隶属化,代表了提出“Candidatus Desurofobulbus rimicarensis”名称的潜在新种。基因组和转录组分析表明,该细菌利用木质LjungdaHL途径用于碳同化和通过硫歧化收获能量,这与其他虾诱饵显着不同。另外,这种诱导具有推定的氮固定活性,但直接从主机或通风环境中直接占用氨和尿素是极其活性的。此外,遗传率可以通过各种特征与自由生物亲属区分开,例如贫血性和运动性状,生物合成基因的急剧减少,用于荚膜细胞和细胞外多糖,富集碳固定和硫代谢所需的基因富集。和对环境毒素的抵抗力。我们的研究突出了深海水热通风口虾德拉奇克菌的独特作用和共生适应。分析虾仁纤维赛代表着沿着大西洋中部山脊的许多深海水热通风口生态系统的主导鳄鲸生物量。这种有机体患有致密的细菌遗传群落在其扩大的头部植物室中,其发挥着重要的营养作用。 deltaprooteobacteria在R. exoculata的癫痫群中普遍存在,其作为诱饵的功能作用仅基于功能基因的存在。在这里,我们描述了“Candidatus desurofobulbus rimicarensis”,一种未开垦的deltaprooteobacterial癫痫菌。与R. exoculata的振动杆菌和γ斑秃秃秃的诱饵相比,这种细菌具有独特的代谢途径,例如木质 - Ljungdahl途径,以及硫歧化和氮固定途径。此外,这种诱导可以通过降低的遗传含量和潜在的功能丧失,从密切相关的自由生活脱硫菌株区分,这表明对虾宿主的独特适应。该研究是对Deltaproteobacterial癫痫的基因组和转录组分析,并且在很大程度上扩大了对其新陈代谢的理解和对R. Exoculata宿主的适应。

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