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Microbial iron uptake as a mechanism for dispersing iron from deep-sea hydrothermal vents

机译:微生物吸收铁作为深海热液喷口中铁扩散的一种机制

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Deep-sea hydrothermal vents are a significant source of oceanic iron. Although hydrothermal iron rapidly precipitates as inorganic minerals on mixing with seawater, it can be stabilized by organic matter and dispersed more widely than previously recognized. The nature and source of this organic matter is unknown. Here we show that microbial genes involved in cellular iron uptake are highly expressed in the Guaymas Basin deep-sea hydrothermal plume. The nature of these microbial iron transporters, taken together with the low concentration of dissolved iron and abundance of particulate iron in the plume, indicates that iron minerals are the target for this microbial scavenging and uptake. Our findings indicate that cellular iron uptake is a major process in plume microbial communities and suggest new mechanisms for generating Fe-C complexes. This 'microbial iron pump' could represent an important mode of converting hydrothermal iron into bioavailable forms that can be dispersed throughout the oceans.RI Li, Meng/K-3172-2012
机译:深海热液喷口是海洋铁的重要来源。尽管热液铁在与海水混合后迅速以无机矿物质的形式沉淀,但是它可以被有机物稳定并比以前公认的更广泛地分散。这种有机物的性质和来源尚不清楚。在这里,我们显示了与细胞铁吸收有关的微生物基因在瓜伊马斯盆地深海热液羽流中高表达。这些微生物铁转运蛋白的性质,加上低浓度的溶解铁和羽状烟尘中大量的颗粒铁,表明铁矿物质是这种微生物清除和吸收的目标。我们的发现表明,细胞内铁的吸收是羽状微生物群落的主要过程,并提出了生成Fe-C复合物的新机制。这种``微生物铁泵''可能代表了一种将热液铁转化为可生物利用的形式的重要模式,这种形式可以分散在整个海洋中。李黎,孟/ K-3172-2012

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