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Deep-biosphere consortium of fungi and prokaryotes in Eocene subseafloor basalts

机译:始新世海底玄武岩中真菌和原核生物的深层生物圈财团

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The deep biosphere of the subseafloor crust is believed to contain a significant part of Earth's biomass, but because of the difficulties of directly observing the living organisms, its composition and ecology are poorly known. We report here a consortium of fossilized prokaryotic and eukaryotic micro-organisms, occupying cavities in deep-drilled vesicular basalt from the Emperor Seamounts, Pacific Ocean, 67.5m below seafloor (mbsf). Fungal hyphae provide the framework on which prokaryote-like organisms are suspended like cobwebs and iron-oxidizing bacteria form microstromatolites (Frutexites). The spatial inter-relationships show that the organisms were living at the same time in an integrated fashion, suggesting symbiotic interdependence. The community is contemporaneous with secondary mineralizations of calcite partly filling the cavities. The fungal hyphae frequently extend into the calcite, indicating that they were able to bore into the substrate through mineral dissolution. A symbiotic relationship with chemoautotrophs, as inferred for the observed consortium, may be a pre-requisite for the eukaryotic colonization of crustal rocks. Fossils thus open a window to the extant as well as the ancient deep biosphere.
机译:人们认为海底外壳的深层生物圈含有地球生物量的很大一部分,但是由于直接观察生物体的困难,人们对其组成和生态学知之甚少。我们在这里报告了一个化石化的原核和真核微生物财团,它们占据了来自海底(mbsf)下方67.5m的太平洋皇帝海山深钻孔水泡玄武岩中的空腔。真菌菌丝提供了一个框架,可以像蜘蛛网一样悬浮原核生物样生物,铁氧化细菌形成微叠层石(Frutexites)。空间上的相互关系表明,这些生物体以整合的方式同时生活着,这表明共生相互依赖。该社区与方解石的次生矿化同时充满了部分空腔。真菌菌丝经常延伸到方解石中,表明它们能够通过矿物质溶解进入基质。根据观察到的财团推断,与化学自养生物共生关系可能是地壳岩石真核定殖的先决条件。化石因此为现存的以及古老的深层生物圈打开了一扇窗户。

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