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首页> 外文期刊>Applied Microbiology and Biotechnology >Bacteria dominate the ammonia-oxidizing community in a hydrothermal vent site at the Mid-Atlantic Ridge of the South Atlantic Ocean
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Bacteria dominate the ammonia-oxidizing community in a hydrothermal vent site at the Mid-Atlantic Ridge of the South Atlantic Ocean

机译:细菌在南大西洋中大西洋海脊热液喷口的氨氧化群落中占主导地位

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Ammonia oxidation is the first and rate-limiting step of nitrification, which is carried out by two groups of microorganisms: ammonia-oxidizing bacteria (AOB) and the recently discovered ammonia-oxidizing archaea (AOA). In this study, diversity and abundance of AOB and AOA were investigated in five rock samples from a deep-sea hydrothermal vent site at the Mid-Atlantic Ridge (MAR) of the South Atlantic Ocean. Both bacterial and archaeal ammonia monooxygenase subunit A (amoA) gene sequences obtained in this study were closely related to the sequences retrieved from deep-sea environments, indicating that AOB and AOA in this hydrothermal vent site showed typical deep ocean features. AOAwere more diverse but less abundant than AOB. The ratios of AOA/AOB amoA gene abundance ranged from 1/3893 to 1/242 in all investigate samples, indicating that bacteria may be the major members responding to the aerobic ammonia oxidation in this hydrothermal vent site. Furthermore, diversity and abundance of AOA and AOB were significantly correlatedwith the contents of total nitrogen and total sulfur in investigated samples, suggesting that these two environmental factors exert strong influences on distribution of ammonia oxidizers in deep-sea hydrothermal vent environment.
机译:氨氧化是硝化的第一步和限速步骤,它是由两类微生物进行的:氨氧化细菌(AOB)和最近发现的氨氧化古细菌(AOA)。在这项研究中,对来自南大西洋中大西洋海岭(MAR)的一个深海热液喷口站点的五个岩石样品中的AOB和AOA的多样性和丰度进行了研究。这项研究中获得的细菌和古细菌氨单加氧酶亚基A(amoA)基因序列均与从深海环境中检索到的序列密切相关,这表明该热液喷口处的AOB和AOA表现出典型的深海特征。与AOB相比,AOA更加多样化,但数量却较少。在所有研究样本中,AOA / AOB amoA基因丰度的比率范围为1/3893至1/242,这表明细菌可能是该热液喷口部位对好氧氨氧化反应的主要成员。此外,研究样品中AOA和AOB的多样性和丰度与总氮和总硫的含量显着相关,这表明这两个环境因素对深海热液喷口环境中氨氧化剂的分布有很大影响。

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