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Zonation of Microbial Communities by a Hydrothermal Mound in the Atlantis II Deep (the Red Sea)

机译:亚特兰蒂斯二世深部(红海)热液丘对微生物群落的分区

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摘要

In deep-sea geothermal rift zones, the dispersal of hydrothermal fluids of moderately-high temperatures typically forms subseafloor mounds. Major mineral components of the crust covering the mound are barite and metal sulfides. As a result of the continental rifting along the Red Sea, metalliferous sediments accumulate on the seafloor of the Atlantis II Deep. In the present study, a barite crust was identified in a sediment core from the Atlantis II Deep, indicating the formation of a hydrothermal mound at the sampling site. Here, we examined how such a dense barite crust could affect the local environment and the distribution of microbial inhabitants. Our results demonstrate distinctive features of mineral components and microbial communities in the sediment layers separated by the barite crust. Within the mound, archaea accounted for 65% of the community. In contrast, the sediments above the barite boundary were overwhelmed by bacteria. The composition of microbial communities under the mound was similar to that in the sediments of the nearby Discovery Deep and marine cold seeps. This work reveals the zonation of microbial communities after the formation of the hydrothermal mound in the subsurface sediments of the rift basin.
机译:在深海地热裂谷带,中等高温的热液流通常会散布在海底土丘中。覆盖土堆的地壳的主要矿物成分是重晶石和金属硫化物。由于沿红海的大陆裂谷,含金属的沉积物堆积在亚特兰蒂斯II深海底。在本研究中,从Atlantis II Deep的沉积岩心中发现了重晶石壳,表明在采样点形成了热液丘。在这里,我们研究了这种致密的重晶石壳如何影响当地环境和微生物种群的分布。我们的结果证明了由重晶石壳分隔的沉积层中矿物成分和微生物群落的独特特征。在土丘中,古细菌占社区的65%。相反,重晶石边界上方的沉积物被细菌淹没。丘底下的微生物群落组成与附近的Discovery Deep和海洋冷渗流沉积物中的相似。这项工作揭示了裂谷盆地地下沉积物中热液丘形成后微生物群落的分区。

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