期刊文献+

现代分子生物学技术在瘤胃产甲烷菌研究中的应用 被引量:1

下载PDF
导出
摘要 瘤胃产甲烷菌代谢产生的甲烷气体,既能引起饲料能量的损失,又能引起温室效应,因此成为当前的一个研究热点。了解瘤胃产甲烷菌菌群的组成及其多样性是对其菌群结构进行调控,并最终控制甲烷产生的基础。但由于产甲烷菌培养条件要求苛刻,迄今为止只有少数几种产甲烷菌得到分离培养。现代分子生物学的迅速发展和应用,突破了瘤胃微生物不可培养的限制,极大地推动了对产甲烷菌的研究。本文综述了现代分子生物学技术在瘤胃产甲烷菌研究中的应用进展情况,并对其发展前景作了展望。
出处 《中国奶牛》 2009年第11期57-60,共4页 China Dairy Cattle
基金 商丘师范学院博士启动基金
  • 相关文献

参考文献31

  • 1IPCC(Intergovernmental Panel on Climate Change), Climate Change 2007[M]. The Scientific Basis. Cambridge University Press, Cambridge, UK. 2007.
  • 2Lin, C.Z., Raskin, L., et al.[J]. FEMS Microbiol. Ecol., 1997, 22 : 281-294.
  • 3Soliva, C.R., Hindrichsen, I.K., et al.[J]. Lett. Appl. Microbiol., 2003,37 : 35-39.
  • 4Soliva, C.R., Meile, L., et al.[J]. Anaerobe, 2004,10:269-276.
  • 5Skillman, L.C., Evans, P.N., et al.[J]. Anaerobe, 2004,10: 277-285.
  • 6Wina, E., Muetzel, S., et al.[J]. Anita. Feed Sci. Technol., 2005, 121 : 159-174.
  • 7Raskin, L., Poulsen, L.K., et a|.[J]. App. Environ. Microbial., 1994,60 : 1241-1248.
  • 8Yanagita, K., Kamagata, Y., et al.[J]. Biosci. Biotechnol. Biochem., 2000,64 : 1757-1742.
  • 9Shinkai, T., Kobayashi, Y.[J]. App. Environ. Microbial., 2007,73 (5) : 1646-1652.
  • 10Wilson, K.H., Blitchington, R.B.[J]. App. Environ. Microbial., 1996,62 : 2273-2278.

二级参考文献28

  • 1朱伟云.瘤胃微生物.见:冯仰廉.反刍动物营养学.北京:科学出版社,2004.
  • 2Regensbogenova M, McEwan NR, Javorsky P, et al. A re-appraisal of the diversity of the methanogens associated with the rumen ciliates. FEMS Microbiology Letters, 2004, 238:307 - 313.
  • 3Nakashimada Y, Srinivasan K, Murakami M, et al. Direct conversion of cellulose to methane by anaerobic fungus Neocallimastix frontalis and defined methanogens. Biotechnology Letters, 2000, 22: 223- 227.
  • 4Joblin KN, Matsui H, Naylor GE, et al. Degradation of fresh ryegrass by methanogenic co-cultures of ruminal fungi grown in the presence or absence of Fibrobacter succinogenes. Current Microbiology, 2002, 45( 1 ) : 46- 53.
  • 5Zoetendal EG, Akkermans ADL. Temperature gradient gel electrophoresis analysis from human fecal samples reveals stable and host-specific communities of active bacteria. Applied and Environmentcd Microbiology, 1998, 64 : 3854 - 3859.
  • 6Chan OC, Wolf M, Hepperle D, et al. Methanogenic archaeal community in the sediment of an artificially partitioned acidic bog lake. FEMS Microbiology Ecology, 2002, 42: 119- 129.
  • 7Watanabe T, Asakawa S, Nakamura A, et al. DGGE method for analyzing 16S rDNA of methanogenic archaeal community in paddy field soil. FEMS Microbiology Letters, 2004, 232:153 - 163.
  • 8Konstantinov SR, Zhu WY, Williams BA, et al. Effect of fermentable carbohydrates on piglet faecal bacterial communities as revealed by denaturing gradient gel electrophoresis analysis of 16S ribosomal DNA. FEMS Microbiology Ecology, 2003, 43:225-235.
  • 9Leclerc M, Delbes C, Moletta R, et al. Single strand conformation polymorphism monitoring of 16S rDNA Archaea during start-up of an an aerobic digester. FEMS Microbiology Ecology, 2001, 34: 213- 220.
  • 10Simankova MV, Kotsyurbenko OR, Lueders T, et al. Isolation and characterization of new strains of methanogens from cold terrestrial habitats. Systematic and Applied Microbiology, 2003, 26:312 - 318.

共引文献34

同被引文献17

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部