Japan Agency for Marine-Earth Science and Technology, Kanagawa, Japan.
Appl Environ Microbiol. 2012 Mar;78(5):1311-20. doi: 10.1128/AEM.06491-11. Epub 2011 Dec 30.
Viruses play important roles in marine surface ecosystems, but little is known about viral ecology and virus-mediated processes in deep-sea hydrothermal microbial communities. In this study, we examined virus-like particle (VLP) abundances in planktonic and attached microbial communities, which occur in physical and chemical gradients in both deep and shallow submarine hydrothermal environments (mixing waters between hydrothermal fluids and ambient seawater and dense microbial communities attached to chimney surface areas or macrofaunal bodies and colonies). We found that viruses were widely distributed in a variety of hydrothermal microbial habitats, with the exception of the interior parts of hydrothermal chimney structures. The VLP abundance and VLP-to-prokaryote ratio (VPR) in the planktonic habitats increased as the ratio of hydrothermal fluid to mixing water increased. On the other hand, the VLP abundance in attached microbial communities was significantly and positively correlated with the whole prokaryotic abundance; however, the VPRs were always much lower than those for the surrounding hydrothermal waters. This is the first report to show VLP abundance in the attached microbial communities of submarine hydrothermal environments, which presented VPR values significantly lower than those in planktonic microbial communities reported before. These results suggested that viral lifestyles (e.g., lysogenic prevalence) and virus interactions with prokaryotes are significantly different among the planktonic and attached microbial communities that are developing in the submarine hydrothermal environments.
病毒在海洋表面生态系统中发挥着重要作用,但深海热液微生物群落中的病毒生态学和病毒介导的过程知之甚少。在这项研究中,我们研究了浮游生物和附着微生物群落中类病毒颗粒 (VLP) 的丰度,这些微生物群落存在于深海和浅海海底热液环境中的物理和化学梯度中(热液流体与环境海水混合的水以及附着在烟囱表面区域或大型动物体和群体上的密集微生物群落)。我们发现,病毒广泛分布于各种热液微生物栖息地,除了热液烟囱结构的内部部分。浮游生物栖息地中的 VLP 丰度和 VLP 与原核生物的比值(VPR)随着热液流体与混合水的比例增加而增加。另一方面,附着微生物群落中的 VLP 丰度与整个原核生物丰度呈显著正相关;然而,VPR 始终远低于周围热液水的 VPR。这是首次报道在海底热液环境附着微生物群落中存在 VLP 丰度,其 VPR 值明显低于以前报道的浮游微生物群落中的 VPR 值。这些结果表明,在海底热液环境中形成的浮游生物和附着微生物群落中,病毒的生活方式(例如溶原性流行)和病毒与原核生物的相互作用存在显著差异。