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作 者:陈源源[1] 沈微[1] 樊游[1] 陈献忠[1] Suren Singh 石贵阳[1] 王正祥[1]
机构地区:[1]江南大学工业生物技术教育部重点实验室,江苏无锡214122 [2]德班理工大学生物工程与食品技术系
出 处:《工业微生物》2013年第2期1-5,共5页Industrial Microbiology
基 金:国家自然资源科技平台(No.2005DKA21208);教育部科技基础条件平台(No.505006)资助
摘 要:利用16S rDNA序列同源性分析法对保藏于中国高校工业微生物资源与信息中心(CICIMCU)的3 726株细菌分离物进行了分子鉴定。实验结果显示:其中3 073株细菌分离物可被成功鉴定至种一级水平,分属于210个种,45个属,占整个细菌分离物的82.5%;其余653株细菌分离物可鉴定到属一级,占整个细菌分离物的17.5%。研究中也发现,16S rDNA序列在芽孢杆菌属(Bacillus)和土芽孢杆菌属(Geobacillus)等少数菌属中的部分种间鉴定的敏感性不高。上述结果表明16S rDNA序列在大多数细菌种属鉴定中具有较高的特异性和敏感性,可以作为第一轮分子标识用于大批量细菌分离物的鉴定。The feasibility of 16S rDNA sequence-based analysis for systemic classification of bacterial isolates was exten- sively evaluated. The 16S rDNA sequences of 3 726 bacterial strains collected in CICIM-CU were amplified by PCR and sequenced. The sequencing results were compared to reference data available at the GenBank database by using BLAST. Most of bacterial isolates ( 82.5% ) were assigned to species level successfully. 653 strains ( 17.5% ) were only could be assigned to genus level. Some closely-related species belonged to genus Bacillus and Geobacillus had highly similar 16S rDNA sequences, making 16S rDNA sequence analysis-based identification problematic. This study showed that 16S rDNA sequences were sufficiently sensitive for identifying most of bacterial isolates. It could be powerfully and ordinarily used as first-round molecular marker to systemic identification of bacterial isolates in bulk.
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