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Effects of High Hydrostatic Pressure on Coastal Bacterial Community Abundance and Diversity

机译:高静水压力对沿海细菌群落丰度和多样性的影响

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Hydrostatic pressure is an important parameter influencing the distribution of microbial life in the ocean. In this study, the response of marine bacterial populations from surface waters to pressures representative of those under deep-sea conditions was examined. Southern California coastal seawater collected 5 m below the sea surface was incubated in microcosms, using a range of temperatures (16 to 3°C) and hydrostatic pressure conditions (0.1 to 80 MPa). Cell abundance decreased in response to pressure, while diversity increased. The morphology of the community also changed with pressurization to a predominant morphotype of small cocci. The pressure-induced community changes included an increase in the relative abundance of Alphaproteobacteria, Gammaproteobacteria, Actinobacteria, and Flavobacteria largely at the expense of Epsilonproteobacteria. Culturable high-pressure-surviving bacteria were obtained and found to be phylogenetically similar to isolates from cold and/or deep-sea environments. These results provide novel insights into the response of surface water bacteria to changes in hydrostatic pressure.
机译:静水压力是影响海洋微生物分布的重要参数。在这项研究中,研究了海洋细菌种群从地表水对代表深海条件下的压力的响应。在一定范围内的温度(16至3°C)和静水压力条件(0.1至80 MPa)的条件下,以缩影方式对在海面以下5 m收集的南加州沿海海水进行了温育。细胞丰度响应压力而降低,而多样性增加。群落的形态也随着加压而改变为小球菌的主要形态。压力引起的群落变化包括α-变形杆菌,γ-变形杆菌,放线菌和黄杆菌的相对丰度的增加,而以Epsilon变形杆菌为代价。获得了可培养的可存活的高压细菌,并发现它们与寒冷和/或深海环境中的分离物在系统发育上相似。这些结果为地表水细菌对静水压力变化的响应提供了新颖的见解。

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