Competition between Fe(III)-reducing and methanogenic bacteria for acetate in iron-rich freshwater sediments

被引:103
作者
Roden, EE [1 ]
Wetzel, RG
机构
[1] Univ Alabama, Dept Biol Sci, Tuscaloosa, AL 35487 USA
[2] Univ N Carolina, Dept Environm Sci & Engn, Chapel Hill, NC 27599 USA
关键词
D O I
10.1007/s00248-002-1037-9
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The kinetics of acetate uptake and the depth distribution of [2-C-14]acetate metabolism were examined in iron-rich sediments from a beaver impoundment in northcentral Alabama. The half-saturation constant (K-m) determined for acetate uptake in slurries of Fe(III)-reducing sediment (0.8 muM) was more than 10-fold lower than that measured in methanogenic slurries (12 muM) which supported comparable rates of bulk organic carbon metabolism and V-max values for acetate uptake. The endogenous acetate concentration (S-n) was also substantially lower (1.7 muM) in Fe(III)-reducing vs methanogenic (9.0 muM) slurries. The proportion of [2-C-14]acetate converted to (CH4)-C-14 increased with depth from ca 0.1 in the upper 0.5 cm to ca 0.8 below 2 cm and was inversely correlated (r(2) = 0.99) to a decline in amorphous Fe(III) oxide concentration. The results of the acetate uptake kinetics experiments suggest that differences in the affinity of Fe(III)-reducing bacteria vs methanogens for acetate can account for the preferential conversion of [2-C-14] acetate to (CO2)-C-14 in Fe(Ill) oxide-rich surface sediments, and that the downcore increase in conversion of [2-C-14]acetate to (CH4)-C-14 can be attributed to progressive liberation of methanogens from competition with Fe(III) reducers as Fe(III) oxides are depleted with depth.
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页码:252 / 258
页数:7
相关论文
共 33 条
[1]   COMPETITION FOR ELECTRON-DONORS AMONG NITRATE REDUCERS, FERRIC IRON REDUCERS, SULFATE REDUCERS, AND METHANOGENS IN ANOXIC PADDY SOIL [J].
ACHTNICH, C ;
BAK, F ;
CONRAD, R .
BIOLOGY AND FERTILITY OF SOILS, 1995, 19 (01) :65-72
[2]   ROLE OF INTERSPECIES H-2 TRANSFER TO SULFATE AND FERRIC IRON-REDUCING BACTERIA IN ACETATE CONSUMPTION IN ANOXIC PADDY SOIL [J].
ACHTNICH, C ;
SCHUHMANN, A ;
WIND, T ;
CONRAD, R .
FEMS MICROBIOLOGY ECOLOGY, 1995, 16 (01) :61-69
[3]   Reduction of Fe(III) oxide by methanogens in the presence and absence of extracellular quinones [J].
Bond, DR ;
Lovley, DR .
ENVIRONMENTAL MICROBIOLOGY, 2002, 4 (02) :115-124
[4]   TURNOVER OF C-14-LABELED ACETATE IN MARINE-SEDIMENTS [J].
CHRISTENSEN, D ;
BLACKBURN, TH .
MARINE BIOLOGY, 1982, 71 (02) :113-119
[5]   Contribution of hydrogen to methane production and control of hydrogen concentrations in methanogenic soils and sediments [J].
Conrad, R .
FEMS MICROBIOLOGY ECOLOGY, 1999, 28 (03) :193-202
[6]  
CONRAD R, 1993, BIOGEOCHEMISTRY OF GLOBAL CHANGE, P317
[7]   Rice roots and methanogenesis in a paddy soil: ferric iron as an alternative electron acceptor in the rooted soil [J].
Frenzel, P ;
Bosse, U ;
Janssen, PH .
SOIL BIOLOGY & BIOCHEMISTRY, 1999, 31 (03) :421-430
[8]   ACETATE CONCENTRATIONS AND OXIDATION IN SALT-MARSH SEDIMENTS [J].
HINES, ME ;
BANTA, GT ;
GIBLIN, AE ;
HOBBIE, JE ;
TUGEL, JB .
LIMNOLOGY AND OCEANOGRAPHY, 1994, 39 (01) :140-148
[10]   METHANE PRODUCTION, SULFATE REDUCTION AND COMPETITION FOR SUBSTRATES IN THE SEDIMENTS OF LAKE WASHINGTON [J].
KUIVILA, KM ;
MURRAY, JW ;
DEVOL, AH ;
NOVELLI, PC .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1989, 53 (02) :409-416