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Co-registered Geochemistry and Metatranscriptomics Reveal Unexpected Distributions of Microbial Activity within a Hydrothermal Vent Field

机译:共同注册的地球化学和超转录组学揭示了热液排放场中微生物活动的意外分布

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Despite years of research into microbial activity at diffuse flow hydrothermal vents, the extent of microbial niche diversity in these settings is not known. To better understand the relationship between microbial activity and the associated physical and geochemical conditions, we obtained co-registered metatranscriptomic and geochemical data from a variety of different fluid regimes within the ASHES vent field on the Juan de Fuca Ridge. Microbial activity in the majority of the cool and warm fluids sampled was dominated by a population of Gammaproteobacteria (likely sulfur oxidizers) that appear to thrive in a variety of chemically distinct fluids. Only the warmest, most hydrothermally-influenced flows were dominated by active populations of canonically vent-endemic Epsilonproteobacteria . These data suggest that the Gammaproteobacteria collected during this study may be generalists, capable of thriving over a broader range of geochemical conditions than the Epsilonproteobacteria . Notably, the apparent metabolic activity of the Gammaproteobacteria —particularly carbon fixation—in the seawater found between discrete fluid flows (the intra-field water) suggests that this area within the Axial caldera is a highly productive, and previously overlooked, habitat. By extension, our findings suggest that analogous, diffuse flow fields may be similarly productive and thus constitute a very important and underappreciated aspect of deep-sea biogeochemical cycling that is occurring at the global scale.
机译:尽管对散流热液喷口的微生物活性进行了多年研究,但在这些环境中微生物生态位多样性的程度尚不清楚。为了更好地了解微生物活性与相关的物理和地球化学条件之间的关系,我们从胡安·德·福卡岭上ASHES喷口区域内的各种流体状态获得了共同注册的转录组和地球化学数据。大部分采样的冷热流体中的微生物活性主要由似乎在各种化学上不同的流体中壮成长的丙种变形杆菌(可能是硫氧化剂)控制。只有最热,受热液影响最大的流量才被典型的典型地方性流行的Epsilon变形杆菌所控制。这些数据表明,在这项研究期间收集到的γ-变形杆菌可能是多面手,能够在比Epsilon变形杆菌更广泛的地球化学条件下蓬勃发展。值得注意的是,在离散的流体流(田间水)之间的海水中,γ-变形杆菌的表观代谢活性(特别是碳固定)表明,轴向破火山口内的该区域是高产的,以前是被忽视的栖息地。通过扩展,我们的发现表明,类似的,分散的流场可能具有相似的生产力,因此构成了全球范围内发生的深海生物地球化学循环的一个非常重要且未被重视的方面。

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