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Close association of active nitrifiers with Beggiatoa mats covering deep-sea hydrothermal sediments

机译:活性硝化剂与覆盖深海热液沉积物的贝格托亚垫紧密结合

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摘要

Hydrothermal sediments in the Guaymas Basin are covered by microbial mats that are dominated by nitrate-respiring and sulphide-oxidizing Beggiatoa. The presence of these mats strongly correlates with sulphide- and ammonium-rich fluids venting from the subsurface. Because ammonium and oxygen form opposed gradients at the sediment surface, we hypothesized that nitrification is an active process in these Beggiatoa mats. Using biogeochemical and molecular methods, we measured nitrification and determined the diversity and abundance of nitrifiers. Nitrification rates ranged from 74 to 605 μmol N l~(?1) mat day~(?1), which exceeded those previously measured in hydrothermal plumes and other deep-sea habitats. Diversity and abundance analyses of archaeal and bacterial ammonia monooxygenase subunit A genes, archaeal 16S ribosomal RNA pyrotags and fluorescence in situ hybridization confirmed that ammonia- and nitrite-oxidizing microorganisms were associated with Beggiatoa mats. Intriguingly, we observed cells of bacterial and potential thaumarchaeotal ammonia oxidizers attached to narrow, Beggiatoa-like filaments. Such a close spatial coupling of nitrification and nitrate respiration in mats of large sulphur bacteria is novel and may facilitate mat-internal cycling of nitrogen, thereby reducing loss of bioavailable nitrogen in deep-sea sediments.
机译:瓜伊马斯盆地的热液沉积物被微生物垫所覆盖,这些微生物垫以硝酸盐吸收和硫化物氧化的贝格托亚为主导。这些垫的存在与从地下排出的富含硫化物和铵的流体密切相关。由于铵和氧在沉积物表面形成相反的梯度,因此我们假设硝化作用是这些贝格托亚垫中的一个活跃过程。使用生物地球化学和分子方法,我们测量了硝化作用并确定了硝化剂的多样性和丰度。硝化速率为74至605μmolN l〜(?1)垫天〜(?1),超过了以前在热液羽流和其他深海生境中测得的值。古细菌和细菌的氨单加氧酶亚基A基因,古细菌16S核糖体RNA标记和荧​​光原位杂交的多样性和丰度分析证实,氧化氨和亚硝酸盐的微生物与贝格托亚垫有关。有趣的是,我们观察到细菌和潜在的拟潮藻氨氧化剂的细胞附着在狭窄的贝格托亚样细丝上。大型硫细菌垫层中硝化作用和硝酸盐呼吸的这种紧密的空间耦合是新颖的,可以促进垫层内部氮的循环,从而减少深海沉积物中生物利用氮的损失。

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