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草鱼肠道纤维素降解细菌的分离与鉴定
CHARACTERIZATION OF CELLULOSE-DECOMPOSING BACTERIA IN THE INTESTINE OF GRASS CARP, CTENOPHARYNGODON IDELLA (VAL.)

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文摘 为更好地弄清草鱼(Ctenopharyngodon idella)肠道纤维素降解细菌的种类, 采用羧甲基纤维素(CMC)作为唯一碳源的选择性培养基, 分别从草鱼肠道内容物和肠道黏膜中分离到了40株产纤维素酶细菌。16S rRNA基因序列的分析结果显示, 大多数产纤维素酶细菌为气单胞菌属(Aeromonas)的种类, 其次为肠杆菌属(Enterobacter)的细菌以及未经分离纯培养的细菌(Uncultured bacterium)。进一步研究细菌产纤维素酶能力发现, 纤维素酶活性显著性高于其他菌株的分别是A. veronii MC2、A. veronii BC6、肠杆菌科(Enterobacteriaceae)中一种未经分离纯培养的细菌BM3(Uncultured bacterium BM3)和A. jandaei HC9。草鱼肠道中简答气单胞菌(A. jandaei)、类志贺邻单胞菌(Plesiomonas shigelloides)、阴沟肠杆菌(E. cloacae)以及产气肠杆菌(E. aerogenes)是被作为产纤维素酶细菌的首次报道。
其他语种文摘 The microbiota in the animal digestive tracts plays an important role in the nutrition and metabolism of their host. Many cellulose-ingesting animals need the microorganisms in their digestive tracts for degrading cellulose and therefore providing the energy. For example, cellulose-decomposing bacterial population has been frequently found in the intestine of grass carp (Ctenopharyngodon idella), an herbivore fish species. However, knowledge about this type of bacteria remains unclear. In this study, we characterized the species of the cellulose-decomposing microbiota in the content and mucosa in the intestine of grass carp. We isolated and cultured the cellulolytic bacteria in the foregut, midgut and hindgut of the intestine using the medium with carboxymethycellulose (1%) as its sole carbon source. Enterobacterial repetitive intergenic consensus (ERIC) PCR fingerprint was utilized to identify different genotypes of the isolated bacteria. The cellulose-degrading activity of each strain was indicated by the ratio of the diameter of the clear zone to the diameter of the colony. We identified the genotypes of these bacteria by sequencing the 16S rRNA gene. Forty strains of cellulose-decomposing bacteria from intestinal content and mucosa of grass carp were identified. Two genotypes of the cellulose-decomposing bacteria were discovered in the content of foregut and hindgut, and in the mucosa of midgut and hindgut. Only one genotype of the cellulose-decomposing bacteria was discovered in the mucosa of foregut and midgut. The 16S rRNA sequencing analysis showed that the majority of the cellulolytic bacteria was Aeromonas which accounted for 85% of the total bacterial isolates. Enterobacter accounted for 7.5% and the "uncultured bacterium" accounted for 5%. The ability of degrading cellulose varied remarkably among different bacterial strains. High enzymatic activity was observed in some isolates of the cellulose-degrading bacteria. The bacterial isolates with a ratio (the diameter of clearing zone to the diameter of the colony) greater than 5.0 had significantly higher cellulolytic ability than the others. These bacterial isolates were identified as Aeromonas veronii (MC2, BC6), "uncultured bacterium" (BM3) in Enterobacteriaceae, and A. jandaei (HC9). Here we reported that A. jandaei, Plesiomonas shigelloides, Enterobacter cloacae and E. aerogenes were cellulose-decomposing bacteria in grass carp intestine for the first time. The results of the present study indicated that there were a variety of cellulose-degrading bacteria in the intestine of grass carp. Our study contributed to the knowledge about cellulolytic bacterial species in the intestine of grass carp, and will provide the guidance for the selection of cellulose-degrading probiotics.
来源 水生生物学报 ,2014,38(2):291-297 【核心库】
关键词 草鱼 ; 肠道 ; 内容物 ; 黏膜 ; 纤维素降解细菌
地址

中国科学院水生生物研究所, 中国科学院水生生物多样性与保护重点实验室, 武汉, 430072

语种 中文
文献类型 研究性论文
ISSN 1000-3207
学科 微生物学
基金 国家自然科学基金面上项目 ;  国家973计划 ;  国家现代农业产业技术体系建设专项资金项目
文献收藏号 CSCD:5103850

参考文献 共 32 共2页

1.  李健华. 中国渔业统计年鉴,2010:28 被引 1    
2.  李思发. 鲢、鳙、草鱼摄食节律和日摄食率的初步研究. 水产学报,1980,4:275-283 被引 26    
3.  倪达书. 草鱼生物学与疾病,1999:46 被引 2    
4.  Lo N. Evidence from multiple gene sequences indicates that termites evolved from wood- feeding cockroaches. Current Biology,2000,10:801-804 被引 12    
5.  Wang J. Isolation of a multi-functional endogenous cellulase gene from mollusk, Ampullaria crossean. Acta Biochimica et Biophysica Sinica,2003,35:941-946 被引 14    
6.  Desvaux M. The cellulosome of Clostridium cellulolyticum. Enzyme and Microbial Technology,2005,37:373-385 被引 8    
7.  Inoue T. Molecular cloning and characterization of a cellulase gene from a symbiotic protist of the lower termite. Coptotermes formosanus. Gene,2005,34:67-75 被引 9    
8.  Tian C G. Systems analysis of plant cell wall degradation by the model filamentous fungus Neurospora crassa. Proceedings of the National Academy of Sciences, USA,2009,106:157-162 被引 2    
9.  Foley B. Heterotrophic nutrition in animals. Biology (2nd),2001:486-515 被引 1    
10.  Brulc J M. Gene-centric metagenomics of the fiber-adherent bovine rumen microbiome reveals forage specific glycoside hydrolases. Proceedings of the National Academy of Sciences, USA,2009,106:1948-1953 被引 50    
11.  Das K M. Studies on the digestive enzymes of grass carp, Ctenopharyngodon idella (Val.). Aquaculture,1991,92:21-32 被引 55    
12.  Saha S. Characterization of cellulase-producing bacteria from the digestive tract of tilapia, Oreochromis mossambica (Peters) and grass carp, Ctenopharyngodon idella (Valenciennes). Aquaculture Research,2006,37:380-388 被引 15    
13.  冯雪. 草鱼和银鲫肠道产消化酶细菌的研究. 淡水渔业,2008,38:51-57 被引 18    
14.  Jiang Y. Cellulase-producing bacteria of Aeromonas are dominant and indigenous in the gut of Ctenopharyngodon idellus (Valenciennes). Aquaculture Research,2011,42:499-505 被引 8    
15.  Wu S G. Composition, diversity, and origin of the bacterial community in grass carp intestine. PloS One,2012,7:1-11 被引 4    
16.  Ringo E. Use of 16S rRNA gene sequencing analysis to characterize culturable intestinal bacteria in Atlantic salmon (Salmo salar) fed diets with cellulose or non-starch polysaccharides from soy. Aquaculture Research,2008,39:1087-1100 被引 10    
17.  Versalovic J. Distribution of repetitive DNA-sequences in eubacteria and application to fingerprinting of bacterial genomes. Nucleic Acids Research,1991,19:6823-6831 被引 171    
18.  Teather R M. Use of Congo red-polysaccharide interactions in enumeration and characterization of cellulolytic bacteria from the bovine rumen. Applied and Environmental Microbiology,1982,43:777-780 被引 61    
19.  Saitou N. The neighbor-joining method - a new method for reconstructing phylogenetic trees. Molecular Biology and Evolution,1987,4:406-425 被引 1301    
20.  Fish G R. Digestion in Tilapia esculenta. Nature,1951,167:900-901 被引 2    
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