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深海热液区ε-变形菌纲细菌的分布、系统发育多样性及生理特征

Distribution, phylogenetic diversity and physiological characteristics of epsilon-Proteobacteria in a deep-sea hydrothermal field.

作者信息

Nakagawa Satoshi, Takai Ken, Inagaki Fumio, Hirayama Hisako, Nunoura Takuro, Horikoshi Koki, Sako Yoshihiko

机构信息

Laboratory of Marine Microbiology, Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Oiwake-cho, Kitashirakawa, Kyoto 606-8502, Japan.

出版信息

Environ Microbiol. 2005 Oct;7(10):1619-32. doi: 10.1111/j.1462-2920.2005.00856.x.

Abstract

Epsilon-Proteobacteria is increasingly recognized as an ecologically significant group of bacteria, particularly in deep-sea hydrothermal environments. In this study, we studied the spatial distribution, diversity and physiological characteristics of the epsilon-Proteobacteria in various microbial habitats in the vicinity of a deep-sea hydrothermal vent occurring in the Iheya North field in the Mid-Okinawa Trough, by using culture-dependent and -independent approaches. The habitats studied were inside and outside hydrothermal plume, and annelid polychaete tubes. In addition, we deployed colonization devices near the vent emission. The polychaete tubes harboured physiologically and phylogenetically diverse microbial community. The in situ samplers were predominantly colonized by epsilon-Proteobacteria. Energy metabolism of epsilon-Proteobacteria isolates was highly versatile. Tree topology generated from the metabolic traits was significantly different (P = 0.000) from that of 16S rRNA tree, indicating current 16S rRNA gene-based analyses do not provide sufficient information to infer the physiological characteristics of epsilon-Proteobacteria. Nevertheless, culturability of epsilon-Proteobacteria in various microbial habitats differed among the phylogenetic subgroups. Members of Sulfurimonas were characterized by the robust culturability, and the other phylogenetic subgroups appeared to lose culturability in seawater, probably because of the sensitivity to oxygen. These results provide new insight into the ecophysiological characteristics of the deep-sea hydrothermal vent epsilon-Proteobacteria, which has never been assessed by comparative analysis of the 16S rRNA genes.

摘要

ε-变形菌纲日益被认为是一类具有重要生态意义的细菌,特别是在深海热液环境中。在本研究中,我们采用基于培养和不依赖培养的方法,研究了冲绳海槽北部伊平屋北场一处深海热液喷口附近各种微生物栖息地中ε-变形菌纲的空间分布、多样性和生理特征。所研究的栖息地包括热液羽流的内部和外部以及多毛纲环节动物的栖管。此外,我们在喷口排放口附近部署了定殖装置。多毛纲环节动物的栖管中含有生理和系统发育上多样的微生物群落。原位采样器主要被ε-变形菌纲定殖。ε-变形菌纲分离株的能量代谢具有高度的多样性。由代谢特征生成的树拓扑结构与16S rRNA树的拓扑结构显著不同(P = 0.000),这表明目前基于16S rRNA基因的分析无法提供足够的信息来推断ε-变形菌纲的生理特征。然而,ε-变形菌纲在各种微生物栖息地中的可培养性在系统发育亚群之间存在差异。硫单胞菌属的成员具有很强的可培养性,而其他系统发育亚群在海水中似乎失去了可培养性,这可能是由于对氧气敏感。这些结果为深海热液喷口ε-变形菌纲的生态生理特征提供了新的见解,而此前从未通过对16S rRNA基因的比较分析进行过评估。

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