Effects of amendment with ferrihydrite and gypsum on the structure and activity of methanogenic populations in rice field soil

被引:124
作者
Lueders, T [1 ]
Friedrich, MW [1 ]
机构
[1] Max Planck Inst Terr Mikrobiol, D-35043 Marburg, Germany
关键词
D O I
10.1128/AEM.68.5.2484-2494.2002
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
Methane emission from paddy fields may be reduced by the addition of electron acceptors to stimulate microbial populations competitive to methanogens. We have studied the effects of ferrihydrite and gypsum (CaSO4 . 2H(2)O) amendment on methanogenesis and population dynamics of methanogens after flooding of Italian rice field soil slurries. Changes in methanogen community structure were followed by archaeal small subunit (SSU) ribosomal DNA (rDNA)- and rRNA-based terminal restriction fragment length polymorphism analysis and by quantitative SSU rRNA hybridization probing. Under ferrihydrite amendment, acetate was consumed efficiently (<60 muM) and a rapid but incomplete inhibition of methanogenesis occurred after 3 days. In contrast to unamended controls, the dynamics of Methanosarcina populations were largely suppressed as indicated by rDNA and rRNA analysis. However, the low acetate availability was still sufficient for activation of Methanosaeta spp., as indicated by a strong increase of SSU rRNA but not of relative rDNA frequencies. Unexpectedly, rRNA amounts of the novel rice cluster I (RC-I) methanogens increased significantly, while methanogenesis was low, which may be indicative of transient energy conservation coupled to Fe(III) reduction by these methanogens. Under gypsum addition, hydrogen was rapidly consumed to low levels (similar to0.4 Pa), indicating the presence of a competitive population of hydrogenotrophic sulfate-reducing bacteria (SRB). This was paralleled by, a suppressed activity of the hydrogenotrophic RC-I methanogens as indicated by the lowest SSU rRNA quantities detected in all experiments. Full inhibition of methanogenesis only became apparent when acetate was depleted to nonpermissive thresholds (<5 muM) after 10 days. Apparently, a competitive, acetotrophic population of SRB was not present initially, and hence, acetotrophic methanosarcinal populations were less suppressed than under ferrihydrite amendment. In conclusion, although methane production was inhibited effectively under both mitigation regimens, different methanogenic populations were either suppressed or stimulated, which demonstrates that functionally similar disturbances of an ecosystem may result in distinct responses of the populations involved.
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页码:2484 / 2494
页数:11
相关论文
共 62 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]   The oligonucleotide probe database [J].
Alm, EW ;
Oerther, DB ;
Larsen, N ;
Stahl, DA ;
Raskin, L .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (10) :3557-3559
[4]   PHYLOGENETIC IDENTIFICATION AND IN-SITU DETECTION OF INDIVIDUAL MICROBIAL-CELLS WITHOUT CULTIVATION [J].
AMANN, RI ;
LUDWIG, W ;
SCHLEIFER, KH .
MICROBIOLOGICAL REVIEWS, 1995, 59 (01) :143-169
[5]   Turnover of glucose and acetate coupled to reduction of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil [J].
Chidthaisong, A ;
Conrad, R .
FEMS MICROBIOLOGY ECOLOGY, 2000, 31 (01) :73-86
[6]  
Chin KJ, 1999, APPL ENVIRON MICROB, V65, P2341
[7]   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
[9]   Methane emission from irrigated and intensively managed rice fields in Central Luzon (Philippines) [J].
Corton, TM ;
Bajita, JB ;
Grospe, FS ;
Pamplona, RR ;
Assis, CA ;
Wassmann, R ;
Lantin, RS ;
Buendia, LV .
NUTRIENT CYCLING IN AGROECOSYSTEMS, 2000, 58 (1-3) :37-53
[10]   ATMOSPHERIC CHEMISTRY - METHANES SINKS AND SOURCES [J].
CRUTZEN, PJ .
NATURE, 1991, 350 (6317) :380-381