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首页> 外文期刊>International Journal of Molecular Sciences >Rapid Development of Microsatellite Markers for the Endangered Fish Schizothorax biddulphi (Günther) Using Next Generation Sequencing and Cross-Species Amplification
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Rapid Development of Microsatellite Markers for the Endangered Fish Schizothorax biddulphi (Günther) Using Next Generation Sequencing and Cross-Species Amplification

机译:利用下一代测序和跨物种扩增技术快速开发濒危鱼类双歧杆菌(Günther)的微卫星标记

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Tarim schizothoracin (Schizothorax biddulphi) is an endemic fish species native to the Tarim River system of Xinjiang and has been classified as an extremely endangered freshwater fish species in China. Here, we used a next generation sequencing platform (ion torrent PGM™) to obtain a large number of microsatellites for S. biddulphi, for the first time. A total of 40577 contigs were assembled, which contained 1379 SSRs. In these SSRs, the number of dinucleotide repeats were the most frequent (77.08%) and AC repeats were the most frequently occurring microsatellite, followed by AG, AAT and AT. Fifty loci were randomly selected for primer development; of these, 38 loci were successfully amplified and 29 loci were polymorphic across panels of 30 individuals. The Ho ranged from 0.15 to 0.83, and He ranged from 0.15 to 0.85, with 3.5 alleles per locus on average. Cross-species utility indicated that 20 of these markers were successfully amplified in a related, also an endangered fish species, S. irregularis. This study suggests that PGM™ sequencing is a rapid and cost-effective tool for developing microsatellite markers for non-model species and the developed microsatellite markers in this study would be useful in Schizothorax genetic analysis.
机译:Tarim schizothoracin(Schizothorax biddulphi)是新疆塔里木河系统的特有鱼类,在中国被列为极度濒危的淡水鱼类。在这里,我们首次使用了下一代测序平台(ion torrent PGM™)来获得大量用于比氏链球菌的微卫星。总共组装了40577个重叠群,其中包含1379个SSR。在这些SSR中,二核苷酸重复的频率最高(77.08%),而AC重复频率最高的是微卫星,其次是AG,AAT和AT。随机选择五十个基因座进行引物开发;其中,成功扩增了38个基因座,而29个基因座在30个个体的面板中是多态的。 H o 的范围为0.15至0.83,H e 的范围为0.15至0.85,每个基因座平均具有3.5个等位基因。跨物种效用表明,这些标记中的20个已在相关的,也濒临灭绝的鱼类S.normalis中成功扩增。这项研究表明,PGM™测序是开发用于非模型物种的微卫星标记的快速且具有成本效益的工具,本研究中开发的微卫星标记可用于裂殖酵母的遗传分析。

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