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机构地区:[1]中国水产科学研究院淡水渔业研究中心/农业部淡水渔业与种质资源利用重点实验室,江苏无锡214081
出 处:《扬州大学学报(农业与生命科学版)》2017年第1期45-51,共7页Journal of Yangzhou University:Agricultural and Life Science Edition
基 金:"十二五"国家科技支撑计划项目(2012BAD26B02);现代农业产业技术体系建设专项(CARS-46-06);中国水产科学研究院基本科研业务费资助项目(2016RC-LX03)
摘 要:近年来,mtDNA条形码技术已广泛应用于鱼类种质鉴定研究。为探讨该技术在鲤种质鉴定方面应用的可行性及如何有效应用于地域种群等鉴定分析,从NCBI网站(http://www.ncbi.nlm.nih.gov/)搜集鲤COⅠ、COⅡ、Cytb和D-loop4个mtDNA序列,并尝试基于DNA条形码技术来进行鲤所属国家的鉴定分析。结果表明:Cytb相对其他3个线粒体序列存在较大的DNA条形码间隙,COⅡ基因最佳匹配的准确率最高(准确率82.97%),基于4个mtDNA序列的聚类分析表明鲤所属国家按照临近区域聚类。综合条形码间隙及假阳性率和假阴性率的评价,研究认为,相比其他3个mtDNA序列,Cytb基因用于鉴定鲤所属国家更具优势,但其鉴定效率仍不理想。综上所述,mtDNA序列用于鉴定鲤不同地域的技术依然需要改进,以降低这一技术的假阳性率和假阴性率。In recent years, DNA barcoding has been widely used to species identification. However, whether it can be useful and how to identity the country property of Common carp (Cyprinus carpio L) has been rarely reported. Four mi- tochondrial genes sequences (CO I , COIl , Cytb, and Dloop) were captured and country property of common carp was identified according to DNA barcoding method. The results showed that Cytb yielded higher barcoding gap compared to others, while CO[[ obtained the highest success rate under the best match approach. Based on four mtDNA sequences, the adjacent countries of phylogenetic trees were clustered into one clade. Considering the barcoding gap, false positive rate and false negative ratio, Cytb had more advantages for analyzing the common carp's country property compared to other 3 mtDNA sequences, although the identification was still not ideal. To sum up, decreasing the false negative rate and false positive rate for the common carp strain or location identification are the further work using DNA barcoding technology.
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