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Manganese(II)-Oxidizing Bacillus Spores in Guaymas Basin Hydrothermal Sediments and Plumes

机译:瓜亚马斯盆地热液沉积物和羽状流中氧化锰(II)的芽孢杆菌孢子

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摘要

Microbial oxidation and precipitation of manganese at deep-sea hydrothermal vents are important oceanic biogeochemical processes, yet nothing is known about the types of microorganisms or mechanisms involved. Here we report isolation of a number of diverse spore-forming Mn(II)-oxidizing Bacillus species from Guaymas Basin, a deep-sea hydrothermal vent environment in the Gulf of California, where rapid microbially mediated Mn(II) oxidation was previously observed. mnxG multicopper oxidase genes involved in Mn(II) oxidation were amplified from all Mn(II)-oxidizing Bacillus spores isolated, suggesting that a copper-mediated mechanism of Mn(II) oxidation could be important at deep-sea hydrothermal vents. Phylogenetic analysis of 16S rRNA and mnxG genes revealed that while many of the deep-sea Mn(II)-oxidizing Bacillus species are very closely related to previously recognized isolates from coastal sediments, other organisms represent novel strains and clusters. The growth and Mn(II) oxidation properties of these Bacillus species suggest that in hydrothermal sediments they are likely present as spores that are active in oxidizing Mn(II) as it emerges from the seafloor.
机译:锰在深海热液喷口的氧化和沉淀是重要的海洋生物地球化学过程,但对所涉及的微生物类型或机理尚无知。在这里,我们报告了从Guaymas盆地(位于加利福尼亚湾的深海热液喷口环境)中分离出的多种不同的,形成孢子的Mn(II)氧化芽孢杆菌种,以前曾观察到微生物介导的Mn(II)快速氧化。从所有分离的Mn(II)氧化芽孢杆菌孢子中扩增了参与Mn(II)氧化的mnxG多铜氧化酶基因,这表明铜介导的Mn(II)氧化的机制在深海热液喷口中可能很重要。对16S rRNA和mnxG基因的系统发育分析表明,尽管许多深海Mn(II)氧化芽孢杆菌物种与以前公认的沿海沉积物分离物密切相关,但其他生物代表了新的菌株和簇。这些芽孢杆菌属物种的生长和Mn(II)氧化特性表明,在水热沉积物中,它们很可能以孢子的形式存在,当从海底出来时,它们对Mn(II)的氧化具有活性。

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