School of Oceanography and Astrobiology Program, University of Washington, Seattle, WA, USA.
FEMS Microbiol Ecol. 2013 Feb;83(2):324-39. doi: 10.1111/j.1574-6941.2012.01478.x. Epub 2012 Sep 17.
Physical and chemical gradients are dominant factors in shaping hydrothermal vent microbial ecology, where archaeal and bacterial habitats encompass a range between hot, reduced hydrothermal fluid and cold, oxidized seawater. To determine the impact of these fluid gradients on microbial communities inhabiting these systems, we surveyed bacterial and archaeal community structure among and between hydrothermal plumes, diffuse flow fluids, and background seawater in several hydrothermal vent sites on the Juan de Fuca Ridge using 16S rRNA gene diversity screening (clone libraries and terminal restriction length polymorphisms) and quantitative polymerase chain reaction methods. Community structure was similar between hydrothermal plumes and background seawater, where a number of taxa usually associated with low-oxygen zones were observed, whereas high-temperature diffuse fluids exhibited a distinct phylogenetic profile. SUP05 and Arctic96BD-19 sulfur-oxidizing bacteria were prevalent in all three mixing regimes where they exhibited overlapping but not identical abundance patterns. Taken together, these results indicate conserved patterns of redox-driven niche partitioning between hydrothermal mixing regimes and microbial communities associated with sinking particles and oxygen-deficient waters. Moreover, the prevalence of SUP05 and Arctic96BD-19 in plume and diffuse flow fluids indicates a more cosmopolitan role for these groups in the ecology and biogeochemistry of the dark ocean.
物理和化学梯度是塑造热液喷口微生物生态学的主要因素,在那里,古菌和细菌的栖息地包括从热的、还原的热液流体到冷的、氧化的海水之间的一系列范围。为了确定这些流体梯度对栖息在这些系统中的微生物群落的影响,我们使用 16S rRNA 基因多样性筛选(克隆文库和末端限制性长度多态性)和定量聚合酶链反应方法,在 Juan de Fuca 脊的几个热液喷口地点调查了热液羽流、弥散流流体和背景海水中的细菌和古菌群落结构。热液羽流和背景海水之间的群落结构相似,观察到许多通常与低氧区相关的分类群,而高温弥散流体则表现出明显的系统发育特征。SUP05 和 Arctic96BD-19 是硫氧化细菌,在所有三种混合区系中都很普遍,它们表现出重叠但不完全相同的丰度模式。总的来说,这些结果表明,热液混合区系和与下沉颗粒和缺氧水域相关的微生物群落之间存在保守的氧化还原驱动的生态位划分模式。此外,SUP05 和 Arctic96BD-19 在羽流和弥散流流体中的流行表明,这些群体在黑暗海洋的生态学和生物地球化学中具有更加世界性的作用。