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首页> 外文期刊>Geomicrobiology journal >Microbial Community Compositions and Geochemistry of Sediments with Increasing Distance to the Hydrothermal Vent Outlet in the Kairei Field
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Microbial Community Compositions and Geochemistry of Sediments with Increasing Distance to the Hydrothermal Vent Outlet in the Kairei Field

机译:沉积物的微生物群落组成和地球化学,距离Kairei田中的水热通风口距离增加

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摘要

Microbial metabolisms in sediments play a pivotal role in marine element cycling. In hydrothermal sediments chemosynthetic microorganisms likely prevail, while in non-hydrothermally impacted sediment regimes microorganisms associated with organic matter decomposition are primarily recognized. To test how these microorganisms are distributed along the hitherto neglected transition zone influenced to different degrees by hydrothermal input we sampled four sediment sites: these were (i) near an active vent, (ii) the outer rim, and (iii) the inactive area of the Kairei hydrothermal field as well as (iv) sediments roughly 200 km south-east of the Kairei field. Chemistry and microbial community compositions were different at all sampling sites. Against expectations, the sediments near the active vent did not host typical chemosynthetic microorganisms and chemistry did not indicate current, extensive hydrothermal venting. Data from the outer rim area of the active Kairei field suggested microbially mediated saponite production and diffuse hydrothermal flow from below accompanied by increased metal concentrations. A steep redox gradient in the inactive Kairei field points towards significant redox driven processes resulting in dissolution of hydrothermal precipitates and intense metal mobilization. Local microorganisms were primarily Chloroflexi, Bacillales, Thermoplasmata, and Thaumarchaeota.
机译:沉积物中的微生物代谢在海洋元素循环中发挥枢轴作用。在水热沉积物中,化学合成微生物可能占上风,而在非水热影响的沉积物制度中主要认识到与有机物质分解相关的微生物。为了测试这些微生物沿着迄今忽略的过渡区分布的,通过水热输入,我们采样了四个沉积物位点:这些是(i)在主动通风口附近(i)外圈,(iii)的非活动区域凯因水热场以及(IV)沉积物大约200公里到东南部的Kairei领域。在所有取样位点都有不同的化学和微生物群落组合物。反对期望,活性通风口附近的沉积物并未寄出典型的化学性微生物和化学并未表示电流,广泛的水热通风。来自活性Kairei领域的外轮辋区域的数据表明微生物介导的皂石产生,下面的衍射水热流动伴随着增加的金属浓度。在非活性的Kairei现场朝向显着的氧化还原驱动过程中的陡氧化还原梯度,导致水热沉淀物溶解和强烈的金属摩擦。局部微生物主要是氯昔洛列,杆状杆菌,热固体和Thaumarcheoota。

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