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Early steps in microbial colonization processes at deep-sea hydrothermal vents

机译:深海热液喷口微生物定殖过程的早期步骤

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A pluri-disciplinary in situ colonization experiment was performed to study early stages of colonization in deep-sea vent Alvinella spp. worm habitats. Four colonization devices were deployed onto Alvinella spp. colonies of different chimneys of the East-Pacific Rise (EPR 13°N), for two different periods: a short (less than a week) and a longer one (3 weeks). Video imagery and monitoring of the thermal and physico-chemical conditions were performed during the colonization experiments. Numerous microorganisms bearing specialized adhesion-appendages and/or high amounts of polymeric extracellular matrix were observed on devices, which may efficiently contribute to the colonization of new surfaces. The microbial cohorts preceding and accompanying Alvinella spp. settlement were identified. In all cases, Archaea could not be detected and the microbial mats were essentially composed of e-Proteobacteria. Within this group, one phylotype (AlviH2) was found to dominate the libraries of three colonization devices. Dominance of e-Proteobacteria in the libraries may reflect the wide physiological variety encountered within this group or an adaptability of these microorganisms towards their changing environment. Bacteria affiliated to the Cytophaga-Flavobacterium-Bacteroides group or to the e-Proteobacteria, that grow either chemo-organoheterotrophically by fermentation or chemolithoautotrophically with H2 as an electron donor and S°/S_2O_(32) or NO_3 as a terminal electron acceptor, were isolated from one of the microbial mat formed in 20 days.
机译:进行了多学科的原位定殖实验,以研究深海通风孔Alvinella spp中定殖的早期阶段。蠕虫的栖息地。将四个定殖设备部署到Alvinella spp上。东太平洋上升(EPR 13°N)不同烟囱的殖民地,有两个不同的时期:一个短暂的时期(少于一周)和一个较长的时期(三个星期)。在定植实验期间进行了视频成像以及热和理化条件的监测。在设备上观察到许多带有专门的粘附附件和/或大量的聚合性细胞外基质的微生物,这些微生物可能有效地促进了新表面的定殖。 Alvinella spp之前和之后的微生物队列。确定了定居点。在所有情况下,都无法检测到古细菌,并且微生物垫基本上由电子变形杆菌组成。在该组中,发现一种系统型(AlviH2)主导了三个定殖装置的文库。文库中e-Proteobacteria的优势可能反映了这一群体中广泛的生理多样性,或者反映了这些微生物对其不断变化的环境的适应性。属于吞噬细胞-黄杆菌-拟杆菌属或e-Proteobacteria的细菌,通过发酵以化学-有机异养性或以H2作为电子供体并以S°/ S_2O_(32)或NO_3作为末端电子受体进行化学自养生长。从20天内形成的一种微生物垫中分离出来。

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