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接种纤维素降解菌对牛粪堆肥微生物群落的影响
引用本文:刘佳,李婉,许修宏,李洪涛.接种纤维素降解菌对牛粪堆肥微生物群落的影响[J].环境科学,2011,32(10):3073-3081.
作者姓名:刘佳  李婉  许修宏  李洪涛
作者单位:东北农业大学资源与环境学院,哈尔滨,150030
摘    要:以牛粪和稻草为堆肥原料,利用传统培养法和PCR-DGGE技术相结合对接种纤维素降解菌后堆肥的微生物群落的动态变化进行了分析.结果表明,接种菌堆肥与自然堆肥相比,微生物数量的变化趋势快于自然堆肥,接种菌在堆肥初期能够激发微生物增殖,快速启动堆肥发酵,缩短堆肥进程.接种菌堆肥比自然堆肥的DGGE凝胶图谱条带的差异性大,接种...

关 键 词:牛粪  堆肥  微生物群落  纤维素降解菌  变性梯度凝胶电泳(DGGE)
收稿时间:2010/11/23 0:00:00
修稿时间:2011/1/17 0:00:00

Effect of Cellulose-decomposing Strain on Microbial Community of Cow Manure Compost
LIU Ji,LI Wan,XU Xiu-hong and LI Hong-tao.Effect of Cellulose-decomposing Strain on Microbial Community of Cow Manure Compost[J].Chinese Journal of Environmental Science,2011,32(10):3073-3081.
Authors:LIU Ji  LI Wan  XU Xiu-hong and LI Hong-tao
Institution:LIU Jia,LI Wan,XU Xiu-hong,LI Hong-tao(College of Resources and Environmental Sciences,Northeast Agricultural University,Harbin 150030,China)
Abstract:Taking the cow dung and straw as composting raw materials, effect of cellulose-decomposing strain on microbial community of cow manure compost was investigated with the traditional culture method and PCR-DGGE technique. The results showed that the microbiological inocula showed a more rapid rate of temperature elevation at the start of composting and prolonged the time of high-temperature process and increased the number of microbial. The DGGE map of cellulose-decomposing strain compost was different from natural compost, the succession of microbial community in cellulose-decomposing strain was faster than natural compost. Sequence comparison revealed that the Pseudomonassp.of bacterial appeared at the initial stage and Acinetobacter sp.,Flavobacteria were existed at the high-temperature process in natural compost; while Arthrobacter sp. was appeared at the high-temperature process in cellulose-decomposing strain compost. Bacillus sp. was dominant species at middle and later stage in natural compost and cellulose-decomposing strain compost. Eimeriidae of fungal appeared in compost materials, Aspergillus and thermophilic fungi were dominant species at the high-temperature process in natural compost and cellulose-decomposing strain compost. Ascomycota appeared at middle and later stage in natural compost; while Basidiomycetes in cellulose-decomposing strain compost. Aspergillus was found throughout the process.This result suggested that the microbiological inocula were able to facilitate the bacterial microbial diversity of the compost; reduced the fungal microbial diversity of the compost. The aims of this study were to provide a scientific basis to the diversity of microbial community by monitoring the dynamics of microbial community in cellulose-decomposing strain compost and represent an important step towards the understanding of microbiological inocula and its function in the degradation process of compost.
Keywords:cow dung  compost  microbial community  cellulose-decomposing strain  denaturing gradient gel electrophoresis (DGGE)
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