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伊比利亚边缘一个化石型失落之城式热液系统的流体混合与深部生物圈。

Fluid mixing and the deep biosphere of a fossil Lost City-type hydrothermal system at the Iberia Margin.

作者信息

Klein Frieder, Humphris Susan E, Guo Weifu, Schubotz Florence, Schwarzenbach Esther M, Orsi William D

机构信息

Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

Department of Geology and Geophysics, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

出版信息

Proc Natl Acad Sci U S A. 2015 Sep 29;112(39):12036-41. doi: 10.1073/pnas.1504674112. Epub 2015 Aug 31.

Abstract

Subseafloor mixing of reduced hydrothermal fluids with seawater is believed to provide the energy and substrates needed to support deep chemolithoautotrophic life in the hydrated oceanic mantle (i.e., serpentinite). However, geosphere-biosphere interactions in serpentinite-hosted subseafloor mixing zones remain poorly constrained. Here we examine fossil microbial communities and fluid mixing processes in the subseafloor of a Cretaceous Lost City-type hydrothermal system at the magma-poor passive Iberia Margin (Ocean Drilling Program Leg 149, Hole 897D). Brucite-calcite mineral assemblages precipitated from mixed fluids ca. 65 m below the Cretaceous paleo-seafloor at temperatures of 31.7 ± 4.3 °C within steep chemical gradients between weathered, carbonate-rich serpentinite breccia and serpentinite. Mixing of oxidized seawater and strongly reducing hydrothermal fluid at moderate temperatures created conditions capable of supporting microbial activity. Dense microbial colonies are fossilized in brucite-calcite veins that are strongly enriched in organic carbon (up to 0.5 wt.% of the total carbon) but depleted in (13)C (δ(13)C(TOC) = -19.4‰). We detected a combination of bacterial diether lipid biomarkers, archaeol, and archaeal tetraethers analogous to those found in carbonate chimneys at the active Lost City hydrothermal field. The exposure of mantle rocks to seawater during the breakup of Pangaea fueled chemolithoautotrophic microbial communities at the Iberia Margin, possibly before the onset of seafloor spreading. Lost City-type serpentinization systems have been discovered at midocean ridges, in forearc settings of subduction zones, and at continental margins. It appears that, wherever they occur, they can support microbial life, even in deep subseafloor environments.

摘要

还原态热液流体与海水在海底以下混合,被认为能提供能量和底物,以支持水合大洋地幔(即蛇纹岩)中深层化能自养生物的生存。然而,蛇纹岩-hosted海底混合区中地质圈与生物圈的相互作用仍知之甚少。在此,我们研究了位于贫岩浆被动伊比利亚边缘(大洋钻探计划第149航次,897D钻孔)的白垩纪失落之城型热液系统海底以下的化石微生物群落和流体混合过程。水镁石-方解石矿物组合由混合流体在白垩纪古海底以下约65米处沉淀而成,温度为31.7±4.3°C,处于风化的、富含碳酸盐的蛇纹岩角砾岩与蛇纹岩之间的陡峭化学梯度中。氧化态海水与强还原态热液流体在适中温度下混合,创造了能够支持微生物活动的条件。密集的微生物菌落保存在水镁石-方解石脉中,这些脉强烈富集有机碳(高达总碳的0.5 wt.%),但(13)C含量 depleted(δ(13)C(TOC) = -19.4‰)。我们检测到细菌二醚脂质生物标志物、古菌醇和古菌四醚的组合,类似于在活跃的失落之城热液场碳酸盐烟囱中发现的那些。在泛大陆解体期间,地幔岩石暴露于海水中,为伊比利亚边缘的化能自养微生物群落提供了燃料,可能在海底扩张开始之前。失落之城型蛇纹石化系统已在大洋中脊、俯冲带的弧前环境和大陆边缘被发现。看来,无论它们出现在何处,都能支持微生物生命,即使在深海海底环境中。

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本文引用的文献

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Early bioenergetic evolution.早期生物能量学的演化。
Philos Trans R Soc Lond B Biol Sci. 2013 Jun 10;368(1622):20130088. doi: 10.1098/rstb.2013.0088. Print 2013 Jul 19.
3
A serpentinite-hosted ecosystem in the Southern Mariana Forearc.马里亚纳俯冲带蛇纹岩中的生态系统。
Proc Natl Acad Sci U S A. 2012 Feb 21;109(8):2831-5. doi: 10.1073/pnas.1112005109. Epub 2012 Feb 9.
6
Fossil evidence for serpentinization fluids fueling chemosynthetic assemblages.化石证据表明蛇纹石化流体为化能合成群落提供燃料。
Proc Natl Acad Sci U S A. 2011 May 10;108(19):7698-703. doi: 10.1073/pnas.1009383108. Epub 2011 Apr 25.

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