首页> 美国卫生研究院文献>Microbes and Environments >Compositional and Functional Shifts in the Epibiotic Bacterial Community of Shinkaia crosnieri Baba Williams (a Squat Lobster from Hydrothermal Vents) during Methane-Fed Rearing
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Compositional and Functional Shifts in the Epibiotic Bacterial Community of Shinkaia crosnieri Baba Williams (a Squat Lobster from Hydrothermal Vents) during Methane-Fed Rearing

机译:在甲烷喂养的饲养过程中Shinkaia crosnieri Baba和Williams(来自热液喷口的蹲龙虾)的表观生物细菌群落的组成和功能变化

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摘要

The hydrothermal vent squat lobster Shinkaia crosnieri Baba & Williams harbors an epibiotic bacterial community, which is numerically and functionally dominated by methanotrophs affiliated with Methylococcaceae and thioautotrophs affiliated with Sulfurovum and Thiotrichaceae. In the present study, shifts in the phylogenetic composition and metabolic function of the epibiont community were investigated using S. crosnieri individuals, which were reared for one year in a tank fed with methane as the energy and carbon source. The results obtained indicated that indigenous predominant thioautotrophic populations, such as Sulfurovum and Thiotrichaceae members, became absent, possibly due to the lack of an energy source, and epibiotic communities were dominated by indigenous Methylococcaceae and betaproteobacterial methylotrophic members that adapted to the conditions present during rearing for 12 months with a supply of methane. Furthermore, the overall phylogenetic composition of the epibiotic community markedly changed from a composition dominated by chemolithotrophs to one enriched with cross-feeding heterotrophs in addition to methanotrophs and methylotrophs. Thus, the composition and function of the S. crosnieri epibiotic bacterial community were strongly affected by the balance between the energy and carbon sources supplied for chemosynthetic production as well as that between the production and consumption of organic compounds.
机译:热液喷口深蹲龙虾Shinkaia crosnieri Baba&Williams拥有一个表生生物细菌群落,其数量和功能均由与甲基球菌科相关的甲烷营养生物和与硫磺科和硫磺科相关的硫代自养生物控制。在本研究中,使用克氏链球菌个体研究了表观生物群落的系统发育组成和代谢功能的变化,这些个体在装有甲烷作为能源和碳源的水箱中饲养了一年​​。获得的结果表明,可能由于缺乏能源而导致的土著占主导地位的硫代自养种群(如硫脲和硫硫菌科成员)不存在,并且表生生物群落被土著的甲基球菌科和β-变形细菌的甲基营养型种群所控制,这些成员适应了饲养期间的条件持续12个月,并提供甲烷。此外,表生生物群落的整体系统发育组成显着地从以化学营养生物为主的组成改变为除了甲烷营养生物和甲基营养生物之外还富含交叉供养异养生物的组成。因此,克氏链球菌表生细菌群落的组成和功能受到化学合成生产所供应的能量和碳源之间以及有机化合物的生产和消耗之间的平衡的强烈影响。

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