期刊文献+

PLFA法研究稻草固态发酵中的微生物群落结构变化 被引量:15

Microbial Community Changes During the Degradation of Straw Using Phospholipid Fatty Acid Analysis
在线阅读 下载PDF
导出
摘要 在稻草固态发酵体系中同时接种土壤微生物和黄孢原毛平革菌,用磷脂脂肪酸(PLFA)谱图分析法研究发酵过程的微生物群落和生物量变化,同时监测木质纤维素降解率的变化.结果表明,发酵后木质纤维素的降解率可达44%.根据标记性脂肪酸的变化,在发酵第6 d,革兰氏阳性菌、革兰氏阴性菌、真菌的含量都达到了最高值,其中,革兰氏阳性菌的含量较低;真菌和细菌的脂肪酸含量比值变化范围为0.2~0.5,说明真菌是降解木质纤维素的主要群落.主成分分析结果显示,发酵后期以18碳不饱和脂肪酸为主,与标记性脂肪酸分析结果一致,同时跟木质纤维素降解率的变化趋势对应,因此PLFA分析法可以较好地反映稻草固态发酵过程中的微生物群落结构和生物量的变化. Solid-state fermentation system of rice straw was established with the inoculation of soil microorganism and Phanerochaete chrysosporlum. Microbial biomass and community structure were investigated using the phospholipid fatty acid (PLFA) technique, and the changes of lignocellulose' s degradation rate were also detected during the process. The experimental results show that lignocellulose degradation rate reaches 44% after fermentation. When the total amount of phospholipid fatty acid is separated into indicator phospholipid fatty acids for different groups of microorganisms, these groups show different patterns during the process. Contents of PLFA in gram-positive bacteria, gramnegative and fungi reach their peak value on the sixth day. Gram-posltive bacteria have lower contents. The PLFA content ratio of fungi and bacteria is 0.2 ~ 0.5, so fungi are the main community decomposing lignocellulose. Principal component analysis of the PLFA data show that 18 carbon unsaturated fatty acids are the major fatty acids at the end of the process, which is consistent with the results of indicator phospholipid fatty acids and lignocellulose' s degradation rates, so PLFA technique is able to fairly well detect the changes of microbial biomass and community structure in solid-state fermentation system of rice straw.
出处 《环境科学》 EI CAS CSCD 北大核心 2007年第11期2603-2608,共6页 Environmental Science
基金 国家重点基础研究发展计划(973)项目(2005CB72403) 国家高技术研究发展计划(863)项目(2004AA649370) 国家杰出青年科学基金项目(50225926) 2000年度高等学校优秀青年教学科研奖励计划项目 高等学校博士学科点专项科研基金项目(20020532017)
关键词 稻草 固态发酵 群落结构 PLFA rice straw solid-state fermentation microbial community structure PLFA
  • 相关文献

参考文献32

  • 1郁红艳,曾光明,黄国和,黄丹莲,陈耀宁.简青霉Penicillium simplicissimum木质素降解能力[J].环境科学,2005,26(2):167-171. 被引量:24
  • 2宋瑞清,邓勋.Study on biodegradated ability of thirteen edible fungi to straw[J].Journal of Forestry Research,2004,15(3):223-226. 被引量:8
  • 3Stepanova E V,Koroleva O V,Vasilchenko L G,et al.Fungal decomposition of oat straw during liquid and solid-state fermentation[J].Applied Biochemistry and Microbiology,2003,39 (1):65-74.
  • 4张洪勋,王晓谊,齐鸿雁.微生物生态学研究方法进展[J].生态学报,2003,23(5):988-995. 被引量:87
  • 5Medeiros P M,Fernandes S F,Dick R P,et al.Seasonal variations in sugar contents and microbial community in a ryegrass soil[J].Chemosphere,2006,65 (5):832 - 839.
  • 6Hackl E,Pfeffer M,Donat C,et al.Composition of the microbial communities in the mineral soil under different types of natural forest[J].Soil Biology & Biochemistry,2005,37 (4):661-671.
  • 7Puglisi E,Nicelli M,Capri E,et al.A soil alteration index based on phospholipid fatty acid[J].Chemosphere,2005,6 (11):1548- 1557.
  • 8Calderón F J,Jackson L E,Scow K M,et al.Microbial responses to simulated tillage in cultivated and uncultivated soils[J].Soil Biology & Biochemistry,2000,32 (11):1547- 1559.
  • 9CórdovaKrelyos A L,Cao Y,Green P G,et al.Diversity,composition,and geographical distribution of microbial communities in California salt marsh sediments[J].Appl Environ Mierobiol,2006,72 (5):3357 - 3366.
  • 10Syakti A D,Mazzella N,Nerini D,et al.Phospholipid fatty acid of a marine selimentary microbial community in a laboratory microcosm:response to petroleum hydrocarbon contamination[J].Organic Geochemistry,2006,37 (11):1617- 1628.

二级参考文献125

  • 1余惠生,黄秀瑜.稻草木素生物降解的研究[J].纤维素科学与技术,1993,1(1):12-22. 被引量:19
  • 2周敬红,王双飞,韦小英,宋海农,杨崎峰.蔗渣白腐菌处理的电镜观察[J].中国造纸学报,1999,14(1):15-19. 被引量:5
  • 3礼嘉 顾红雅 等.现代生物技术导论[M].北京:高等教育出版社,1998..
  • 4[1]Albertsson PA.1956. Chromatography and partition of cell fragments.Nature,177:771~774
  • 5[2]Albertsson PA.1986.Partition of Cell Particles and Macromolecules.3nd.New York:Wiley.
  • 6[3]Bakken LR.1985. Separation and purification of bacteria from soil.Appl Environ Microbiol,49:1482~1487
  • 7[4]Balkwill DL,Labeda DP,Casida LEJr.1990.Simplified procedures for releasing and concentrating microorganisms from soil for transmission electron microscopy viewing as thin-sectioned and frozon-etched preparations.Can J Microbiol,21:252~262
  • 8[5]Baath E.1996.Thymidine incorporation of bacteria sequentially extracted from soil using repeated homogenization-centrifugation.Microbiol Ecol,31:153~166
  • 9[6]Bardgett RD.1991.The use of the membrane filter technique for comparative measurements of hyphal lengths in different grassland sites.Agric Ecosys Environ,34:115~119
  • 10[7]Bodding CL,Bassett EE,Jacobsen I,et al.1999. Comparison of techniques for the extraction and quantification of extra-radical mycelium of arbuscular mycorrhizal fungi in soil.Soil Biol Biochem,31:479~482

共引文献263

同被引文献323

引证文献15

二级引证文献240

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