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1.
Philos Trans A Math Phys Eng Sci ; 378(2165): 20180425, 2020 Feb 21.
Article in English | MEDLINE | ID: mdl-31902339

ABSTRACT

The subduction of seamounts and ridge features at convergent plate boundaries plays an important role in the deformation of the overriding plate and influences geochemical cycling and associated biological processes. Active serpentinization of forearc mantle and serpentinite mud volcanism on the Mariana forearc (between the trench and active volcanic arc) provides windows on subduction processes.  Here, we present (1) the first observation of an extensive exposure of an undeformed Cretaceous seamount currently being subducted at the Mariana Trench inner slope; (2) vertical deformation of the forearc region related to subduction of Pacific Plate seamounts and thickened crust; (3) recovered Ocean Drilling Program and International Ocean Discovery Program cores of serpentinite mudflows that confirm exhumation of various Pacific Plate lithologies, including subducted reef limestone; (4) petrologic, geochemical and paleontological data from the cores that show that Pacific Plate seamount exhumation covers greater spatial and temporal extents; (5) the inference that microbial communities associated with serpentinite mud volcanism may also be exhumed from the subducted plate seafloor and/or seamounts; and (6) the implications for effects of these processes with regard to evolution of life. This article is part of a discussion meeting issue 'Serpentine in the Earth system'.


Subject(s)
Minerals/chemistry , Origin of Life , Seawater/chemistry , Volcanic Eruptions
2.
Science ; 307(5714): 1428-34, 2005 Mar 04.
Article in English | MEDLINE | ID: mdl-15746419

ABSTRACT

The serpentinite-hosted Lost City hydrothermal field is a remarkable submarine ecosystem in which geological, chemical, and biological processes are intimately interlinked. Reactions between seawater and upper mantle peridotite produce methane- and hydrogen-rich fluids, with temperatures ranging from <40 degrees to 90 degrees C at pH 9 to 11, and carbonate chimneys 30 to 60 meters tall. A low diversity of microorganisms related to methane-cycling Archaea thrive in the warm porous interiors of the edifices. Macrofaunal communities show a degree of species diversity at least as high as that of black smoker vent sites along the Mid-Atlantic Ridge, but they lack the high biomasses of chemosynthetic organisms that are typical of volcanically driven systems.


Subject(s)
Archaea/growth & development , Bacteria/growth & development , Carbonates , Ecosystem , Geologic Sediments , Invertebrates , Seawater , Animals , Archaea/classification , Archaea/isolation & purification , Archaea/metabolism , Bacteria/classification , Bacteria/isolation & purification , Bacteria/metabolism , Biodiversity , Biomass , Colony Count, Microbial , Environment , Fishes , Geologic Sediments/chemistry , Geologic Sediments/microbiology , Hot Temperature , Hydrogen/analysis , Hydrogen/metabolism , Hydrogen-Ion Concentration , Lipids/analysis , Methane/analysis , Methane/metabolism , Phylogeny
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