Luo Peng, Hu Chaoqun
South China Sea Institute of Oceanology, Chinese Academy of Sciences, 164 West Xingang Road, Guangzhou 510301, PR China.
Dis Aquat Organ. 2008 Dec 22;82(3):209-16. doi: 10.3354/dao01984.
gyrB fragments (about 1.2 kb) of 9 Vibrio alginolyticus strains were sequenced, and their phylogenetic relationship with other closely related Vibrio species was analyzed. All the V. alginolyticus strains grouped into one strongly supported cluster in the phylogenetic tree. There were 54 base variations among the 1167 bp mutual gyrB regions of 11 V. alginolyticus strains; all the V. alginolyticus strains shared the same amino acid sequence except V. alginolyticus ATCC 17749. Based on the gyrB sequences, we designed 2 primers for specific PCR identification of V. alginolyticus. Fifty-two bacterial strains from 12 genera were used to test the PCR specificity, and only V. alginolyticus strains produced the predicted 568 bp amplification fragment. In addition, PCR screening of 50 randomly selected environmental strains, grown on thiosulfate citrate bile salts-sucrose (TCBS) medium, gave rise to a positive amplification result for V. alginolyticus from 37 of them. To further confirm accuracy of PCR identification, biochemical identification of the 50 strains was carried out. Strains giving positive PCR amplification were biochemically identified as V. alginolyticus, while strains that gave negative results were biochemically identified as other Vibrio or non-Vibrio species. Using the basic local alignment search tool (BLAST), gyrB sequences obtained from 2 randomly selected strains (YJ0666 and YJ167B) of the 37 PCR-positive strains showed highest identity values with V. alginolyticus strains (>96%). Thus, our results demonstrated that gyrB is a good marker for molecular identification of V. alginolyticus, and a gyrB-based PCR method was successfully developed.
对9株溶藻弧菌菌株的gyrB片段(约1.2 kb)进行测序,并分析它们与其他密切相关弧菌属物种的系统发育关系。在系统发育树中,所有溶藻弧菌菌株聚为一个得到有力支持的簇。11株溶藻弧菌菌株1167 bp的共同gyrB区域中有54个碱基变异;除溶藻弧菌ATCC 17749外,所有溶藻弧菌菌株共享相同的氨基酸序列。基于gyrB序列,我们设计了2对引物用于溶藻弧菌的特异性PCR鉴定。使用来自12个属的52株细菌测试PCR特异性,只有溶藻弧菌菌株产生了预测的568 bp扩增片段。此外,对50株随机选择的在硫代硫酸盐柠檬酸盐胆盐蔗糖(TCBS)培养基上生长的环境菌株进行PCR筛选,其中37株溶藻弧菌得到阳性扩增结果。为进一步确认PCR鉴定的准确性,对这50株菌株进行了生化鉴定。PCR扩增呈阳性的菌株经生化鉴定为溶藻弧菌,而结果为阴性的菌株经生化鉴定为其他弧菌或非弧菌属物种。使用基本局部比对搜索工具(BLAST),从37株PCR阳性菌株中随机选择的2株菌株(YJ0666和YJ167B)获得的gyrB序列与溶藻弧菌菌株显示出最高的同一性值(>96%)。因此,我们的结果表明gyrB是溶藻弧菌分子鉴定的良好标记,并成功开发了基于gyrB的PCR方法。