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首页> 外文期刊>Science Advances >Worm tubes as conduits for the electrogenic microbial grid in marine sediments
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Worm tubes as conduits for the electrogenic microbial grid in marine sediments

机译:蠕虫管作为海洋沉积物中电化微生物网格的导管

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Electrogenic cable bacteria can couple spatially separated redox reaction zones in marine sediments using multicellular filaments as electron conductors. Reported as generally absent from disturbed sediments, we have found subsurface cable aggregations associated with tubes of the parchment worm Chaetopterus variopedatus in otherwise intensely bioturbated deposits. Cable bacteria tap into tubes, which act as oxygenated conduits, creating a three-dimensional conducting network extending decimeters into sulfidic deposits. By elevating pH, promoting Mn, Fe-oxide precipitation in tube linings, and depleting S around tubes, they enhance tube preservation and favorable biogeochemical conditions within the tube. The presence of disseminated filaments a few cells in length away from oxygenated interfaces and the reported ability of cable bacteria to use a range of redox reaction couples suggest that these microbes are ubiquitous facultative opportunists and that long filaments are an end-member morphological adaptation to relatively stable redox domains.
机译:使用多细胞细丝作为电子导体,电致电缆细菌可以将海洋沉积物中空间分隔的氧化还原反应区耦合在一起。据报道,由于通常没有扰动的沉积物,我们已经发现了与羊皮纸蠕虫Chaetopterus variopedatus的管相关的地下电缆聚集体,而该生物体在强烈扰动的沉积物中。电缆细菌进入管子,这些管子充当充氧管道,形成三维导电网络,将分米扩展到硫化物沉积物中。通过提高pH值,促进管壁中Mn,Fe氧化物的沉淀以及减少管周围的S,它们可以增强管的保存性能,并改善管内的良好生物地球化学条件。散布的细丝的存在距离距氧化界面数个细胞,并且据报道电缆细菌使用一系列氧化还原反应对的能力表明这些微生物是普遍存在的兼性机会主义者,并且长细丝是相对于相对形态的末端成员形态适应稳定的氧化还原域。

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