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《Journal of Glaciology and Geocryology》 2004-04
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Microbial-Mediated Methane Cycle in Soils and Global Change: A Review

FENG Hu-yuan~{1, 2}, CHENG Guo-dong~1, AN Li-zhe~1 ansu 730000, China;2. School of Life Sciences, Lanzhou University, Lanzhou Gansu 730000, China)  
Methane is an important greenhouse gas, which is up to 1.7×10~{-6}m~3·m~{-3} over past 300 years and increasing by a steady rate of 1% per year. Although it has a short residing time (about 8-12 years) in the atmosphere, there are more 20-30 times in absorbing the infrared light and driving the global warming than carbon dioxide. Therefore a considerable and wide interest is focused on the mechanisms of methane production, transfer and oxidation, the relationship between resources and sinks. Methane plays a crucial role in the global methane cycle. There are two resources about methane production: biogenic methane and abiogenic resources. The amount of methane involved in biogenic resources accounts for over 80% in the atmosphere and most is emitted through artificial and natural wetlands. Methanogens are strict anaerobes, which share a complex biochemistry for methane synthesis as part of their energy metabolism and methanotrophs have the unique ability to use methane as sole carbon and energy source. Up to now, scientists have isolated more than 80 species of methane-produced bacteria and over 100 species of methane-oxidized bacteria from a various scale of environments. Many environmental factors such as soil physiochemical properties, climatic factors and vegetation type and human activities affect the emission, transportation, transfer and oxidation by influencing microbial processes directly and indirectly. This may be as a main reason to cause the uncertainty of assessing the emission of methane. It is evident that the study of microorganism diversity and microbial ecology of methane bacteria and microbial-mediated methane cycle will favor regulating and controlling the production and oxidation of methane. More concern should be highlighted in this area. This paper reviewed the microbial-induced methane cycle, isolated diversities of methane bacteria (including methanogens and methanotrophs), various factors affecting the growth and development of methane bacteria and stressed the important of further investigation into the rule of methane emission and oxidation, especially, in natural wetlands under the condition of global change.
【Fund】: 国家自然科学基金项目(50008016;90102003);; 冻土工程国家重点实验室开放基金项目(SKLFSE200305);; 中国科学院"百人计划"项目;; 中国科学院知识创新重点项目(KZCX1 09;;KZCX1 10 03)资助
【CateGory Index】: Q938.11
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