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Evidence of Chemolithoautotrophy in the Bacterial Community Associated with Alvinella pompejana, a Hydrothermal Vent Polychaete

机译:与热液通风口多毛AlAlvinella pompejana有关的细菌群落中的化肥性萎缩的证据。

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The deep-sea polychaete Alvinella pompejana colonizes tubes on the sides of black smoker chimneys along the East Pacific Rise. A diverse, yet phylogenetically constrained episymbiotic community is obligately associated with its dorsal surface. The morphologically and phylogenetically distinct dominant episymbionts have not yet been cultured, and there are no clearly defined roles for these bacteria in this symbiosis. A large insert fosmid library was screened for the presence of the two dominant phylotypes. Two fosmids, 35.2 and 38 kb, containing phylotype-specific 16S ribosmal DNA sequences were fully sequenced. Each fosmid had a gene encoding ATP citrate lyase, a key enzyme in the reverse tricarboxylic acid (rTCA) cycle, a CO2 fixation pathway. A selection of episymbiont communities from various geographic locations and vent sites were screened for the presence, diversity, and expression (via reverse transcription-PCR) of the ATP citrate lyase gene. Our results indicate that the ATP citrate lyase gene is not only a consistent presence in these episymbiont communities but is also expressed. Phylogenetically distinct forms of ATP citrate lyase were also found associated with and expressed by bacteria extracted from the tubes of A. pompejana. Utilizing PCR with degenerate primers based on a second key enzyme in the rTCA cycle, 2-oxoglutarate:acceptor oxidoreductase, we also demonstrated the persistent presence and expression of this gene in the episymbiont community. Our results suggest that members of both the episymbiont and the surrounding free-living communities display a chemolithoautotrophic form of growth and therefore contribute fixed carbon to other organisms in the vent community.
机译:深海多毛cha Alvinella pompejana沿东太平洋上升沿黑烟囱烟囱两侧的管子定殖。一个多样化的但在系统发育上受约束的表生共生群落被专门与其背表面相关联。形态和系统发育上不同的显性优势共生体尚未被培养,在这些共生中这些细菌没有明确定义的作用。筛选了一个大型插入的fosmid文库,寻找两种显性系统型。完整测序了两个含有系统型特异性16S核糖体DNA序列的fosmid,35.2和38 kb。每个化石都有一个编码ATP柠檬酸裂合酶的基因,这是反向三羧酸(rTCA)循环中的关键酶,一种CO2固定途径。筛选了来自不同地理位置和通风口的淫荡共生体群落,以寻找柠檬酸ATP裂解酶基因的存在,多样性和表达(通过逆转录PCR)。我们的结果表明,ATP柠檬酸裂解酶基因不仅在这些附生菌群落中始终存在,而且也被表达。系统发育上不同形式的ATP柠檬酸裂合酶也被发现与从庞氏假单胞菌的试管中提取的细菌有关并表达。利用基于rTCA循环中第二种关键酶(2-氧戊二酸:受体氧化还原酶)的简并引物进行PCR,我们还证明了该基因在附生菌群落中的持久存在和表达。我们的研究结果表明,会阴共生体和周围自由生活社区的成员都表现出化学自养型生长,因此向发泄社区的其他生物贡献了固定的碳。

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