CHEMOSYNTHETIC BACTERIAL MATS AT COLD HYDROCARBON SEEPS, GULF OF MEXICO CONTINENTAL-SLOPE

被引:116
作者
SASSEN, R
ROBERTS, HH
AHARON, P
LARKIN, J
CHINN, EW
CARNEY, R
机构
[1] LOUISIANA STATE UNIV,DEPT OCEANOG & COASTAL STUDIES,BATON ROUGE,LA 70803
[2] LOUISIANA STATE UNIV,DEPT GEOL & GEOPHYS,BATON ROUGE,LA 70803
[3] LOUISIANA STATE UNIV,CTR WETLAND RESOURCES,COASTAL ECOL LAB,BATON ROUGE,LA 70803
[4] LOUISIANA STATE UNIV,DEPT MICROBIOL,BATON ROUGE,LA 70803
关键词
GULF-OF-MEXICO; BEGGIATOA; BACTERIAL MATS; HYDROCARBONS; HYDROGEN SULFIDE; ELEMENTAL SULFUR;
D O I
10.1016/0146-6380(93)90083-N
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
White and pigmented filamentous bacterial mats dominated by several undescribed species of Beggiatoa were sampled during research submersible dives to cold hydrocarbon seep sites on the upper continental slope off Louisiana (130-550 m). Mats occur at the interface between reducing sediments and the oxygenated water column. They are localized at sea floor features related to seepage of biogenic methane and crude oil, but there is little evidence that the organisms utilize the hydrocarbons directly. Granules of elemental sulfur (S0) are visible within cells of Beggiatoa, and mat material is characterized by high contents of S0 (up to 193,940 ppm). The Beggiatoa biomass is isotopically light (deltaC-13 = - 27.9 parts per thousand PDB). Our geochemical data suggest that the Beggiatoa species are part of a complex bacterial assemblage in cold seep sediments. They oxidize H2S derived from the bacterial sulfate reduction that accompanies bacterial hydrocarbon oxidation when O2 is depleted in sediments, and fix isotopically light carbon from CO2 that is the result of bacterial hydrocarbon oxidation. Beggiatoa mats appear to retard loss of hydrocarbons to the water column by physically retaining fluids in sediments, a function that could enhance production by other bacteria of the H2S and CO2 needed by Beggiatoa.
引用
收藏
页码:77 / &
相关论文
共 34 条
[1]  
AHARON P, 1991, T GULF COAST ASS GEO, V41, P2
[2]   SEEP OIL AND GAS IN GULF OF MEXICO SLOPE SEDIMENT [J].
ANDERSON, RK ;
SCALAN, RS ;
PARKER, PL ;
BEHRENS, EW .
SCIENCE, 1983, 222 (4624) :619-621
[3]  
BEHRENS EW, 1988, AAPG BULL, V72, P105
[4]   DEEP-SEA HYDROCARBON SEEP COMMUNITIES - EVIDENCE FOR ENERGY AND NUTRITIONAL CARBON-SOURCES [J].
BROOKS, JM ;
KENNICUTT, MC ;
FISHER, CR ;
MACKO, SA ;
COLE, K ;
CHILDRESS, JJ ;
BIDIGARE, RR ;
VETTER, RD .
SCIENCE, 1987, 238 (4830) :1138-1142
[5]   ASSOCIATION OF GAS HYDRATES AND OIL SEEPAGE IN THE GULF-OF-MEXICO [J].
BROOKS, JM ;
COX, HB ;
BRYANT, WR ;
KENNICUTT, MC ;
MANN, RG ;
MCDONALD, TJ .
ORGANIC GEOCHEMISTRY, 1986, 10 (1-3) :221-234
[6]   THERMOGENIC GAS HYDRATES IN THE GULF OF MEXICO [J].
BROOKS, JM ;
KENNICUTT, MC ;
FAY, RR ;
MCDONALD, TJ ;
SASSEN, R .
SCIENCE, 1984, 225 (4660) :409-411
[7]  
Cook D., 1991, T GULF COAST ASS GEO, V41, P100, DOI [10.1021/cen-v069n035.p021, DOI 10.1021/CEN-V069N035.P021]
[8]   SUBMARINE THERMAL SPRINGS ON THE GALAPAGOS RIFT [J].
CORLISS, JB ;
DYMOND, J ;
GORDON, LI ;
EDMOND, JM ;
HERZEN, RPV ;
BALLARD, RD ;
GREEN, K ;
WILLIAMS, D ;
BAINBRIDGE, A ;
CRANE, K ;
VANANDEL, TH .
SCIENCE, 1979, 203 (4385) :1073-1083
[9]  
DAVIDSON DW, 1986, GEOCHIM COSMOCHIM AC, V50, P619, DOI 10.1016/0016-7037(86)90110-9
[10]   INFAUNAL BENTHOS OF A NATURAL PETROLEUM SEEP - STUDY OF COMMUNITY STRUCTURE [J].
DAVIS, PH ;
SPIES, RB .
MARINE BIOLOGY, 1980, 59 (01) :31-41