Methane- and sulfur-metabolizing microbial communities dominate the Lost City hydrothermal field ecosystem

被引:306
作者
Brazelton, William J.
Schrenk, Matthew O.
Kelley, Deborah S.
Baross, John A.
机构
[1] Univ Washington, Sch Oceanog, Seattle, WA 98195 USA
[2] Univ Washington, Ctr Astrobiol & Early Evolut, Seattle, WA 98195 USA
关键词
D O I
10.1128/AEM.00574-06
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Hydrothermal venting and the formation of carbonate chimneys in the Lost City hydrothermal field (LCHF) are driven predominantly by serpentinization reactions and cooling of mantle rocks, resulting in a highly reducing, high-pH environment with abundant dissolved hydrogen and methane. Phylogenetic and terminal restriction fragment length polymorphism analyses of 16S rRNA genes in fluids and carbonate material from this site indicate the presence of organisms similar to sulfur-oxidizing, sulfate-reducing, and methane-oxidizing Bacteria as well as methanogenic and anaerobic methane-oxidizing Archaea. The presence of these metabolic groups indicates that microbial cycling of sulfur and methane may be the dominant biogeochemical processes active within this ultramafic rock-hosted environment. 16S rRNA gene sequences grouping within the Methylobacter and Thiomicrospira clades were recovered from a chemically diverse suite of carbonate chimney and fluid samples. In contrast, 16S rRNA genes corresponding to the Lost City Methanosarcinales phylotype were found exclusively in high-temperature chimneys, while a phylotype of anaerobic methanotrophic Archaea (ANME-1) was restricted to lower-temperature, less vigorously venting sites. A hyperthermophilic habitat beneath the LCHF may be reflected by 16S rRNA gene sequences belonging to Thermococcales and uncultured Crenarchaeota identified in vent fluids. The finding of a diverse microbial ecosystem supported by the interaction of high-temperature, high-pH fluids resulting from serpentinization reactions in the subsurface provides insight into the biogeochemistry of what may be a pervasive process in ultramafic subseafloor environments.
引用
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页码:6257 / 6270
页数:14
相关论文
共 79 条
[11]   Mixing, reaction and microbial activity in the sub-seafloor revealed by temporal and spatial variation in diffuse flow vents at Axial Volcano [J].
Butterfield, DA ;
Roe, KK ;
Lilley, MD ;
Huber, JA ;
Baross, JA ;
Embley, RW ;
Massoth, GJ .
SUBSEAFLOOR BIOSPHERE AT MID-OCEAN RANGES, 2004, 144 :269-289
[12]   A hydrogen-based subsurface microbial community dominated by methanogens [J].
Chapelle, FH ;
O'Neill, K ;
Bradley, PM ;
Methé, BA ;
Ciufo, SA ;
Knobel, LL ;
Lovley, DR .
NATURE, 2002, 415 (6869) :312-315
[13]   An ultraslow-spreading class of ocean ridge [J].
Dick, HJB ;
Lin, J ;
Schouten, H .
NATURE, 2003, 426 (6965) :405-412
[14]   Mud volcanoes - the most important pathway for degassing deeply buried sediments [J].
Dimitrov, LI .
EARTH-SCIENCE REVIEWS, 2002, 59 (1-4) :49-76
[15]   Discovery of abundant hydrothermal venting on the ultraslow-spreading Gakkel ridge in the Arctic [J].
Edmonds, HN ;
Michael, PJ ;
Baker, ET ;
Connelly, DP ;
Snow, JE ;
Langmuir, CH ;
Dick, HJB ;
Mühe, R ;
German, CR ;
Graham, DW .
NATURE, 2003, 421 (6920) :252-256
[16]   Formation of pseudo-terminal restriction fragments, a PCR-related bias affecting terminal restriction fragment length polymorphism analysis of microbial community structure [J].
Egert, M ;
Friedrich, MW .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2003, 69 (05) :2555-2562
[17]   Serpentinization of oceanic peridotites:: Implications for geochemical cycles and biological activity [J].
Früh-Green, GL ;
Connolly, JAD ;
Plas, A ;
Kelley, DS ;
Grobéty, B .
SUBSEAFLOOR BIOSPHERE AT MID-OCEAN RANGES, 2004, 144 :119-136
[18]   30,000 years of hydrothermal activity at the Lost City vent field [J].
Früh-Green, GL ;
Kelley, DS ;
Bernasconi, SM ;
Karson, JA ;
Ludwig, KA ;
Butterfield, DA ;
Boschi, C ;
Proskurowski, G .
SCIENCE, 2003, 301 (5632) :495-498
[19]   Chemistry of rocks and soils in Gusev crater from the alpha particle x-ray spectrometer [J].
Gellert, R ;
Rieder, R ;
Anderson, RC ;
Brückner, J ;
Clark, BC ;
Dreibus, G ;
Economou, T ;
Klingelhöfer, G ;
Lugmair, GW ;
Ming, DW ;
Squyres, SW ;
d'Uston, C ;
Wänke, H ;
Yen, A ;
Zipfel, J .
SCIENCE, 2004, 305 (5685) :829-832
[20]   Growth and population dynamics of anaerobic methane-oxidizing archaea and sulfate-reducing bacteria in a continuous-flow bioreactor [J].
Girguis, PR ;
Cozen, AE ;
DeLong, EF .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2005, 71 (07) :3725-3733