241
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Effects of organic matter application, temperature, and sunshine duration on seasonal and annual variations of methanogenic activity in wetland rice field soil

, , , , , , & show all
Pages 811-823 | Received 24 Dec 1998, Accepted 19 Jul 1999, Published online: 04 Jan 2012

References

  • Asakawa , S. , Akagawa-Matsushita , M. , Morii , H. , Koga , Y. and Hayano , K. 1995 . Characterization of Methanosarcina mazeii TMA isolated from a paddy field soil . Curro Microbiol. , 31 : 34 – 38 .
  • Asakawa , S. and Hayano , K. 1995 . Populations of methanogenic bacteria in paddy field soil under double cropping conditions (rice-wheat) . Biol. Fertil. Soils , 20 : 113 – 117 .
  • Bosse , U. and Frenzel , P. 1998 . Methane emissions from rice microcosms: The balance of production, accumulation and oxidation . Biogeochemistry , 41 : 199 – 214 .
  • Chidthaisong , A. and Watanabe , I. 1997 . Methane formation and emission from flooded rice soil incorporated with 13C-labeled rice straw . Soil Biol. Biochem. , 29 : 1173 – 1181 .
  • Chin , K.-J. and Conrad , R. 1995 . Intermediary metabolism in methanogenic paddy soil and the influence of temperature . FEMS Microbial. Ecol. , 18 : 85 – 102 .
  • Cicerone , R.J. and Oremland , R.S. 1988 . Biogeochemical aspects of atmospheric methane . Global Biogeochem. Cycles , 2 : 299 – 327 .
  • Conrad , R. , Bak , F. , Seits , H.J. , Thebrath , B. , Mayer , H.-P. and Schiltz , H. 1989a . Hydrogen turnover by psychrotrophic homoacetogenic and mesophilic methanogenic bacteria in anoxic paddy soil and lake sediment . FEMS Microbiol. Ecol. , 62 : 285 – 294 .
  • Conrad , R. , Mayer , H.-P. and Wust , M. 1989b . Temporal change of gas metabolism by hydrogen-syntrophic methanogenic bacterial associations in anoxic paddy soil . FEMS Microbiol. Ecol. , 62 : 265 – 274 .
  • Fetzer , S. , Bak , F. and Conrad , R. 1993 . Sensitivity of methanogenic bacteria from paddy soil to oxygen and desiccation . FEMS Microbial. Ecol. , 12 : 107 – 115 .
  • Grobkopf , R. , Janssen , P.H. and Liesack , W. 1998 . Diversity and structure of the methanogenic community in anoxic rice paddy soil microcosms as examined by cultivation and direct 16S rRNA gene sequence retrieval . Appl. Environ. Microbial. , 64 : 960 – 969 .
  • Holzapfel-Pschorn. , A. , Conrad , R. and Seiler , W. 1985 . Production, oxidation and emission of methane in rice paddies . FEMS Microbial. Ecol. , 31 : 343 – 351 .
  • Holzapfel-Pschorn , A. , Conrad , R. and Seiler , W. 1986 . Effects of vegetation on the emission of methane by submerged paddy soil . Plant Soil , 92 : 223 – 233 .
  • Inubushi , K. , Muramatsu , Y. and Umebayashi , M. 1994 . Effect of incorporation-timing of rice straw on methane emissions from paddy soil . Jpn. J. Soil Sci. Plant Nutr. , 65 : 27 – 33 . (in Japanese with English summary)
  • IPCC . 1996-1995 . “ Agricultural options for mitigation of greenhouse gas emissions ” . In Climate Change , Edited by: Hoghton , J.T. , Meira Filho , L.G. , Callader , B.A. , Harris , N. , Kattenberg , A. and Maskell , K. 754 – 771 . Cambridge , , UK : Cambridge Univ. Press .
  • Kaku , N. , Ueki , A. , Fujii , H. and Ueki , K. 1997 . Analysis of methanogenic microbial ecosystem in paddy field soil: Distributions of various bacteria and methanogenic activity on rice roots and plant residue . Environ. Sci. , 10 : 51 – 62 . (in Japanese with English summary)
  • Kaku , N. , Ueki , A. , Fujii , H. and Ueki , K. 1996 . Analysis ofmethanogenic microbial ecosystem in paddy field soil: Seasonal changes in the distribution of various bacteria and effects of organic matter application . Environ. Sci. , 9 : 249 – 261 . (in Japanese with English summary)
  • Kaku , N. , Ueki , A. and Ueki , K. 1999 . Sample preparation for methanogenic activities of heterogeneous flooded rice soils . Microb. Environ. , 14 : 151 – 156 .
  • Kimura , M. , Miura , Y. , Watanabe , A. , Katoh , T. and Haraguchi , H. 1991a . Methane emission from paddy field (Part I). Effect of fertilization^growth stage and midsummer drainage: Pot experiment . Environ. Sci. , 4 : 265 – 271 .
  • Kimura , M. , Murakami , H. and Wada , H. 1991b . CO2, H2, and CH4 production in rice rhizosphere . Soil Sci. Plant Nutr. , 37 : 55 – 60 .
  • Mayer , H.P. and Conrad , R. 1990 . Factors influencing the population of methanogenic bacteria and the initiation of methane production upon flooding of paddy soil . FEMS Microbial. Ecol. , 73 : 103 – 112 .
  • Mowjood , M.I.M. , Ishiguro , K. and Kasubuchi , T. 1997 . Effect of convection in ponded water on the thermal regime of a paddy field . Soil Sci. , 162 : 583 – 587 .
  • Murase , J. , Kimura , M. and Kuwatsuka , S. 1993 . Methane production and its fate in paddy fields. III. Effects of percolation on methane flux distribution to the atmosphere and the subsoil . Soil Sci. Plant Nutr. , 39 : 63 – 70 .
  • Nouchi , I. , Hosono , T. , Aoki , K. and Minami , K. 1994 . Seasonal variation in methane flux from rice paddies associated with methane concentration in soil water, rice biomass and temperature, and its modeling . Plant Soil , 161 : 195 – 208 .
  • Rothfuss , F. and Conrad , R. 1993 . Vertical profiles of CH4 concentrations, dissolved substrates and processes involved in CH4 production in a flooded Italian rice field . Biogeochemistry , 18 : 137 – 152 .
  • Roy , R. , Kluber , D. and Conrad , R. 1997 . Early initiation of methane production in anoxic rice soil despite the presence of oxidants . FEMS Microbial. Ecol. , 24 : 311 – 320 .
  • Sass , R.L. , Fischer , F.M. , Wang , Y.B. , Turner , F.T. and Jund , M.F. 1991 . Methane emission from rice fields as influenced by solar radiation, temperature, and straw incorporation . Global Biogeochem. Cycles , 5 : 335 – 350 .
  • Sass , R.L. , Fischer , F.M. , Wang , Y.B. , Turner , F.T. and Jund , M.F. 1992 . Methane emission from rice fields: The effect of water management . Global Biogeochem. Cycles , 6 : 249 – 262 .
  • Schlitz , H. , Holzapfel-Pschorn , A. , Conrad , R. , Rennenberg , H. and Seiler , W. 1989a . A 3-year continuous record on the influence of daytime, season, and fertilizer treatment on methane emission rates from an Italian rice paddy . J. Geophys. Res. , 94 : 16405 – 16416 .
  • Schlitz , H. , Seiler , W. and Conrad , R. 1989b . Process involved in formation and emission of methane in rice paddies . Biogeochemistry , 7 : 33 – 53 .
  • Schlitz , H. , Seiler , W. and Conrad , R. 1990 . Influence of soil temperature on methane emission from rice paddy fields . Biogeochemistry , 11 : 77 – 95 .
  • Seiler , W. , Holzapfel-Pschorn , A. , Conrad. , R. and Scharffe , D. 1984 . Methane emission from rice paddies . J. Atoms. Chern. , 1 : 241 – 268 .
  • Sowers , K.R. 1995 . “ Methanogenic Archaea: An overview ” . In Archaea: A Laboratory Manual, Methanogens , Edited by: Sowers , K.R. and Schreier , H.J. 3 – 13 . New York : Cold Spring Harbor Lab. Press .
  • Takai , Y. 1970 . The mechanism of methane fermentation in flooded paddy soil . Soil Sci. Plant Nutr. , 6 : 238 – 244 .
  • Takai , Y. , Kamura , T. and Adachi , I. 1958 . Behavior of iron compounds in paddy soil. II. Reexamination on the method of Fe(II) extraction . Jpn. J. Soil Sci. Plant Nutr. , 29 : 216 – 220 . in Japanese)
  • Thebrath , B. , Mayer , H.-P. and Conrad , R. 1992 . Bicarbonate-dependent production and methanogenic consumption of acetate in anoxic paddy soil . FEMS Microbial. Ecol. , 86 : 295 – 302 .
  • Ueki , A. , Ishida , T. , Ohbuchi , K. , Kaku , N. , Nagano , T. , Ueki , K. and Wagatsuma , T. 1995 . Effect of organic matter application on growth of rice plants, soil environments and methane emission from paddy fields . Environ. Sci. , 8 : 293 – 303 . (in Japanese with English summary)
  • Ueki , A. , Ono , K. , Tsuchiya , A. and Ueki , K. 1997 . Survival of methanogens in air-dried paddy field soil and their heat tolerance . Water Sci. Technol. , 36 : 517 – 522 .
  • Wagatsuma , T. , Jujo , K. , Tawaraya , K. , Sato , T. and Ueki , A. 1992 . Decrease of methane concentration and increase of nitrogen gas concentration in the rhizosphere by hygrophytes . Soil Sci. Plant Nutr. , 38 : 467 – 476 .
  • Watanabe , A. , Katoh , K. and Kimura , M. 1993a . Effects of rice straw application on CH4 emission from paddy fields. I. Effect of weathering of rice straw in the field during off-crop season . Soil Sci. Plant Nutr. , 39 : 701 – 706 .
  • Watanabe , A. , Katoh , K. and Kimura , M. 1993b . Effect of rice straw application on CH4 emission from paddy fields. II. Contribution of organic constituents in rice straw . Soil Sci. Plant Nutr. , 39 : 707 – 712 .
  • Watanabe , A. and Kimura , M. 1995 . Methane production and its fate in paddy fields VIII. Seasonal variations in the amount of methane retained in soil . Soil Sci. Plant Nutr. , 41 : 225 – 233 .
  • Watanabe , A. , Satoh , H. and Kimura , M. 1995 . Estimation of the increase in CH. emission from paddy soils by rice straw application . Plant Soil , 173 : 225 – 231 .
  • Yagi , K. and Minami , K. 1990 . Effect of organic matter application on methane emission from some Japanese paddy fields . Soil Sci. Plant Nutr. , 36 : 599 – 610 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.