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Deep-sea hydrothermal vent Epsilonproteobacteria encode a conserved and widespread nitrate reduction pathway (Nap)

机译:深海热液喷口Epsilon变形细菌编码保守且广泛的硝酸盐还原途径(Nap)

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摘要

Despite the frequent isolation of nitrate-respiring Epsilonproteobacteria from deep-sea hydrothermal vents, the genes coding for the nitrate reduction pathway in these organisms have not been investigated in depth. In this study we have shown that the gene cluster coding for the periplasmic nitrate reductase complex (nap) is highly conserved in chemolithoautotrophic, nitrate-reducing Epsilonproteobacteria from deep-sea hydrothermal vents. Furthermore, we have shown that the napA gene is expressed in pure cultures of vent Epsilonproteobacteria and it is highly conserved in microbial communities collected from deep-sea vents characterized by different temperature and redox regimes. The diversity of nitrate-reducing Epsilonproteobacteria was found to be higher in moderate temperature, diffuse flow vents than in high temperature black smokers or in low temperatures, substrate-associated communities. As NapA has a high affinity for nitrate compared with the membrane-bound enzyme, its occurrence in vent Epsilonproteobacteria may represent an adaptation of these organisms to the low nitrate concentrations typically found in vent fluids. Taken together, our findings indicate that nitrate reduction is widespread in vent Epsilonproteobacteria and provide insight on alternative energy metabolism in vent microorganisms. The occurrence of the nap cluster in vent, commensal and pathogenic Epsilonproteobacteria suggests that the ability of these bacteria to respire nitrate is important in habitats as different as the deep-sea vents and the human body.
机译:尽管经常从深海热液喷口中分离出可吸入硝酸盐的Epsilon变形杆菌,但尚未深入研究这些生物中硝酸盐还原途径的编码基因。在这项研究中,我们表明,编码深层热液喷口的化肥自养,减少硝酸盐的Epsilon变形杆菌高度保守了编码周质硝酸还原酶复合物(小睡)的基因簇。此外,我们已经表明napA基因在通风口Epsilon变形杆菌的纯培养物中表达,并且在以不同温度和氧化还原方式为特征的深海通风口收集的微生物群落中高度保守。发现在中等温度,散流口中,减少硝酸盐的Epsilon变形杆菌的多样性要高于高温黑烟民或低温,与底物相关的群落。由于与膜结合酶相比,NapA对硝酸盐具有很高的亲和力,因此它在通风道细菌中的存在可能表明这些生物适应了通风液中通常存在的低硝酸盐浓度。两者合计,我们的研究结果表明硝酸盐还原是广泛存在于通风的Epsilon变形细菌中,并提供了通风微生物中替代性能量代谢的见识。午睡簇在通风孔,共生性和致病性的厄氏菌属细菌中的存在表明,这些细菌呼吸硝酸盐的能力在与深海通风孔和人体不同的栖息地中很重要。

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