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Utility of pairwise mtDNA genetic distances for predicting cross-species microsatellite amplification and polymorphism success in fishes

机译:成对mtDNA遗传距离在预测鱼类中跨物种微卫星扩增和多态性成功中的应用

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摘要

In many studies involving microsatellites cross-species amplification, primers designed for one (source) species are used to amplify homologous loci in related (target) species. However, it is not clear how closely related the species must be to attain significant success. Genetic divergence is a clear and easy way to assess similarity between species and provides an accurate measure of their evolutionary distance. Eight Mediterranean target species of the family Serranidae were analysed using twelve primers developed for Serranus cabrilla. Additionally, two mitochondrial genes (12S rRNA and 16S rRNA) were chosen on the basis of their extensive use in phylogenetic and evolutionary analyses to compute genetic divergence between the species. Significant negative correlations were found between genetic divergence and both cross-species amplification and maintained polymorphism of microsatellite markers, which could be generalized by gathering information from different fish studies. The success of obtaining amplifiable and polymorphic microsatellite loci can be a priori approximated knowing the mtDNA genetic divergence between a given source and target species using our inferred regression equations.
机译:在许多涉及微卫星跨物种扩增的研究中,为一种(源)物种设计的引物用于扩增相关(目标)物种中的同源基因座。但是,尚不清楚该物种必须取得多大的成功才能获得巨大的成功。遗传差异是评估物种之间相似性的一种简单明了的方法,并提供了其进化距离的准确度量。使用为Serranus cabrilla开发的十二种引物分析了Serranidae科的八个地中海目标物种。此外,基于线粒体基因在系统发育和进化分析中的广泛应用以选择物种之间的遗传差异,还选择了两个线粒体基因(12S rRNA和16S rRNA)。发现遗传差异与跨物种扩增和微卫星标记的维持多态性之间存在显着的负相关性,这可以通过收集不同鱼类研究的信息加以推广。使用我们推论的回归方程,已知给定来源和目标物种之间的mtDNA遗传差异,可以先验近似地获得可扩增的多态性微卫星基因座。

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