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Presence and diversity of anammox bacteria in cold hydrocarbon-rich seeps and hydrothermal vent sediments of the Guaymas Basin

机译:瓜伊马斯盆地富含冷烃的渗流和热液喷口沉积物中厌氧氨氧化细菌的存在和多样性

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摘要

Hydrothermally active sediments are highly productive, chemosynthetic areas which are characterized by the rapid turnover of particulate organic matter under extreme conditions in which ammonia is liberated. These systems might be suitable habitats for anaerobic ammonium oxidizing (anammox) bacteria but this has not been investigated in detail. Here we report the diversity and abundance of anammox bacteria in sediments that seep cold hydrocarbon-rich fluids and hydrothermal vent areas of the Guaymas Basin in the Cortés Sea using the unique functional anammox marker gene, hydrazine synthase (hzsA). All clones retrieved were closely associated to the “Candidatus Scalindua” genus. Phylogenetic analysis revealed two distinct clusters of hzsA sequences (Ca. Scalindua hzsA cluster I and II). Comparison of individual sequences from both clusters showed that several of these sequences had a similarity as low as 76% on nucleotide level. Based on the analysis of this phylomarker, a very high interspecies diversity within the marine anammox group is apparent. Absolute numbers of anammox bacteria in the sediments samples were determined by amplification of a 257 bp fragment of the hszA gene in a qPCR assay. The results indicate that numbers of anammox bacteria are generally higher in cold hydrocarbon-rich sediments compared to the vent areas and the reference zone. Ladderanes, lipids unique to anammox bacteria were also detected in several of the sediment samples corroborating the hzsA analysis. Due to the high concentrations of reduced sulfur compounds and its potential impact on the cycling of nitrogen we aimed to get an indication about the key players in the oxidation of sulfide in the Guaymas Basin sediments using the alpha subunit of the adenosine-5′-phosphosulfate (APS) reductase (aprA). Amplification of the aprA gene revealed a high number of gammaproteobacterial aprA genes covering the two sulfur-oxidizing bacteria aprA lineages as well as sulfate-reducers.
机译:热液活性沉积物是高产的化学合成区,其特征是在释放氨的极端条件下,颗粒有机物的快速周转。这些系统可能是厌氧铵氧化细菌的合适栖息地,但尚未对此进行详细研究。在这里,我们使用独特的功能性厌氧菌标记基因肼合酶(hzsA)报告了沉积物中的厌氧菌细菌的多样性和丰富性,这些沉积物渗入了科尔特斯海瓜伊马斯盆地的富含冷烃的流体和热液喷口区域。检索到的所有克隆均与“ Candidatus Scalindua”属密切相关。系统发育分析揭示了两个不同的hzsA序列簇(Ca. Scalindua hzsA簇I和II)。来自两个簇的单个序列的比较表明,这些序列中的几个在核苷酸水平上具有低至76%的相似性。根据对该系统标记的分析,很明显海洋厌氧氨氧化菌群内的物种间多样性很高。通过在qPCR分析中扩增hszA基因的257 bp片段来确定沉积物样品中的厌氧细菌的绝对数量。结果表明,与排放区和参考区相比,富含冷碳氢化合物的沉积物中的厌氧菌的数量通常更高。在几个沉积物样品中也检测到了Ladderanes,这是厌氧氨氧化细菌特有的脂质,证实了hzsA分析。由于高浓度的还原性硫化合物及其对氮循环的潜在影响,我们旨在通过使用5'-磷酸腺苷的α亚基来了解瓜伊马斯盆地沉积物中硫化物氧化的关键因素(APS)还原酶(aprA)。 aprA基因的扩增显示出大量的γ-变形细菌aprA基因覆盖了两个硫氧化细菌aprA谱系以及硫酸盐还原剂。

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