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Diversity and Function of Epibiotic Microbial Communities on the Galatheid Crab, Shinkaia crosnieri

机译:Galatheid蟹,Shinkaia crosnieri上表观生物微生物群落的多样性和功能

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摘要

The galatheid crab, Shinkaia crosnieri (Decapoda: Galatheidae), forms dense colonies in the Iheya North and Hatoma Knoll deep-sea hydrothermal fields and has numerous setae covered with filamentous epibiotic microorganisms. Molecular phylogenetic analyses revealed that the epibiotic communities in S. crosnieri consisted mainly of yet-uncultivated phylotypes within Epsilonproteobacteria and Gammaproteobacteria in both hydrothermal vent fields. Uptake experiments using C-13-labeled tracers clearly demonstrated that both (HCO3-)-C-13 and (CH4)-C-13 were assimilated into not only the epibiotic microbial communities associated with the setae, but also the epibiont-free tissue of living S. crosnieri. In addition, the incorporation of (HCO3-)-C-13 into the microbial cells was strongly stimulated by the presence of reduced sulfur compounds but not by H-2. In conclusion, the uptake experiments suggested that sulfur-oxidizing chemolithoautotrophic and methanotrophic production by the epibionts provides the nutrition for S. crosnieri.
机译:Galathidid蟹Shinkaia crosnieri(十足目:Galatheidae)在北伊希亚和哈托玛·诺尔深海热液田中形成密集的集落,并有许多被丝状表生生物覆盖的刚毛。分子系统发育分析表明,在两个热液喷发区,克氏链球菌的表生生物群落主要由Epsilon变形杆菌和γ变形杆菌内尚未培养的系统型组成。使用C-13标记示踪剂的摄取实验清楚地表明(HCO3-)-C-13和(CH4)-C-13不仅被同化了与刚毛有关的表观微生物群落,而且还被吸收了无表皮的组织克氏菌此外,还原性硫化合物的存在强烈刺激了(HCO3-)-C-13向微生物细胞的掺入,而H-2则没有。总之,摄取实验表明,表皮生物产生的硫氧化化能自养和甲烷营养提供了克氏酵母的营养。

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