首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Synteny And Candidate Gene Prediction Using An Anchored Linkage Map Of Astyanax Mexicanus
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Synteny And Candidate Gene Prediction Using An Anchored Linkage Map Of Astyanax Mexicanus

机译:利用墨西哥悬钩子的锚定连锁图预测同构和候选基因

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The blind Mexican cave tetra, Astyanax mexicanus, is a unique model system for the study of parallelism and the evolution of cave-adapted traits. Understanding the genetic basis for these traits has recently become feasible thanks to production of a genome-wide linkage map and quantitative trait association analyses. The selection of suitable candidate genes controlling quantitative traits remains challenging, however, in the absence of a physical genome. Here, we describe the integration of multiple linkage maps generated in four separate crosses between surface, cave, and hybrid forms of A. mexicanus. We performed exhaustive BLAST analyses of genomic markers populating this integrated map against sequenced genomes of numerous taxa, ranging from yeast to amniotes. We found the largest number of identified sequences (228), with the most expect (E) values <10~(-5) (95), in the zebrafish Danio rerio. The most significant hits were assembled into an "anchored" linkage map with Danio, revealing numerous regions of conserved synteny, many of which are shared across critical regions of identified quantitative trait loci (QTL). Using this anchored map, we predicted the positions of 21 test genes on the integrated linkage map and verified that 18 of these are found in locations homologous to their chromosomal positions in D. rerio. The anchored map allowed the identification of four candidate genes for QTL relating to rib number and eye size. The map we have generated will greatly accelerate the production of viable lists of additional candidate genes involved in the development and evolution of cave-specific traits in A. mexicanus.
机译:墨西哥盲四方洞穴,Astyanax mexicanus,是研究平行性和适应洞穴特征的演化的独特模型系统。由于产生了全基因组连锁图谱和定量性状关联分析,近来了解这些性状的遗传基础变得可行。然而,在缺乏物理基因组的情况下,控制定量性状的合适候选基因的选择仍然具有挑战性。在这里,我们描述了在墨西哥曲霉的表面,洞穴和混合形式之间的四个单独的交叉中生成的多个连锁图的整合。我们对基因组标记物进行了详尽的BLAST分析,该标记物针对的是从酵母菌到羊膜炎菌等众多类群的测序基因组,从而构成了该整合图。我们在斑马鱼Danio rerio中发现了最多的已鉴定序列(228),期望值(E)<10〜(-5)(95)。最重要的命中片段与Danio组合成一个“锚定”链接图,揭示了保守的同调区域,其中许多区域在确定的数量性状基因座(QTL)的关键区域之间共享。使用此锚定图,我们预测了21个测试基因在整合连锁图上的位置,并验证了其中的18个基因位于与其在D. rerio中的染色体位置同源的位置。锚定图允许鉴定与肋骨数目和眼大小有关的四个QTL候选基因。我们生成的图谱将极大地加快与墨西哥A.洞特定性状的发育和进化有关的其他候选基因的可行列表的产生。

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