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低温沼气发酵高效菌系的筛选及微生物群落解析 被引量:2

Screening of High Efficient Inoculum for Low Temperature Biogas Fermentation And Its Microbial Community Analysis
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摘要 为提高低温下沼气发酵效果,该研究使用不同接种物进行沼气发酵,并利用Mi Seq高通量测序技术对优良接种物发酵沼液的群落结构进行分析。结果显示,以牛粪作为接种物在日产气量、产气速率和甲烷含量方面均优于其他组。高通量测序结果分析表明接种牛粪接种物后在细菌群落上形成的优势类群为Bacteroidetes,Firmicutes,Proteobacteria和Spirochaetae,并以Firmicutes和Bacteroidetes占主要优势地位;在古菌群落结构上形成的优势菌群在目的分类水平主要为Methanosarcinales、Miscellaneous Crenarchaeotic Group(MCG)和Methanomicrobiales,并以Methanomicrobiales为主,在属的分类水平上主要为Methanosaeta,MCG和Methanosarcina,其中Methanosaeta占主要地位。该研究为低温沼气发酵接种物的筛选和相关菌系分离及利用提供了科学依据。 In order to improve the efficiency of biogas fermentation at low temperature, the effects of several kinds of inocu- lums were compared, the better one was selected, and its microbial community was analyzed by the method of MiSeq high- throughput sequencing. The results showed that cow dung was the better inoculum comparing with other inoculums, for it obtained higher biogas production. High-throughput sequencing analysis demonstrated that the main bacterial were Bacte- roidetes, Firmicutes, Proteob'acteria and Spirochaetae in cow dung inoculum, and the dominant were Firmicutes and Bacte- roidetes. The main archaea were Methanosarcinales, Miscellaneous Crenarchaeotic group (MCG), and Methanomicrobiales at order level classification and the Methanosarcinales was the dominant. At the genus level classification, the main archaea were Methanosaeta, MCG and Methanosarcina with Methanosaeta as dominant.
作者 杜洋 曹广丽 张军政 宋金柱 丛华 张达 DU Yang CAO Guang-li ZHANG Jun-zheng SONG Jin-zhu CONG Hua ZHANG Da(College of Life Science, Northeast Agricultural University, Harbin 150030, China School of Life Science and Technology, Harbin Institute of Technology, Harbin 150001, China School of Chemical Engineering and Tech- nology, Harbin Institute of Technology, Harbin 150001, China)
出处 《中国沼气》 北大核心 2017年第2期9-14,共6页 China Biogas
基金 国家科技支撑计划(2014BAJ21B02-04)
关键词 沼气 牛粪 高通量测序 微生物群落结构 产甲烷古菌 biogas cow manure high throughput sequencing microbial community structure methanogenic archaea
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