首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Large-Scale Development of Gene-Associated Single-Nucleotide Polymorphism Markers for Molluscan Population Genomic, Comparative Genomic, and Genome-Wide Association Studies
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Large-Scale Development of Gene-Associated Single-Nucleotide Polymorphism Markers for Molluscan Population Genomic, Comparative Genomic, and Genome-Wide Association Studies

机译:大规模开发的基因相关的单核苷酸多态性标记用于软体动物群体的基因组,比较基因组和全基因组关联研究

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Mollusca is the second most diverse group of animals in the world. Despite their perceived importance, omics-level studies have seldom been applied to this group of animals largely due to a paucity of genomic resources. Here, we report the first large-scale gene-associated marker development and evaluation for a bivalve mollusc, Chlamys farreri. More than 21,000 putative single-nucleotide polymorphisms (SNPs) were identified from the C. farreri transcriptome. Primers and probes were designed and synthesized for 4500 SNPs, and 1492 polymorphic markers were successfully developed using a high-resolution melting genotyping platform. These markers are particularly suitable for population genomic analysis due to high polymorphism within and across populations, a low frequency of null alleles, and conformation to neutral expectations. Unexpectedly, high cross-species transferability was observed, suggesting that the transferable SNPs may largely represent ancestral genetic variations that have been preserved differentially among subfamilies of Pectinidae. Gene annotations were available for 73% of the markers, and 65% could be anchored to the recently released Pacific oyster genome. Large-scale association analysis revealed key candidate genes responsible for scallop growth regulation, and provided markers for further genetic improvement of C. farreri in breeding programmes.
机译:软体动物是世界上第二大最多样化的动物。尽管认识到它们的重要性,但由于缺乏基因组资源,几乎没有对这组动物进行组学水平的研究。在这里,我们报告双壳软体动物,披衣草的第一个大规模的基因相关标记开发和评估。从法氏梭菌转录组中鉴定出超过21,000个推定的单核苷酸多态性(SNP)。设计并合成了4500个SNP的引物和探针,并使用高分辨率的熔解基因分型平台成功开发了1492个多态性标记。由于群体内部和群体之间的高多态性,无效等位基因的频率低以及符合中性预期,这些标记特别适合于群体基因组分析。出乎意料的是,观察到了较高的跨物种转移性,这表明可转移的SNP可能在很大程度上代表了祖先遗传变异,这些遗传变异已在果蝇亚科之间得以保留。 73%的标记可用基因注释,而65%的标记可以锚定在最近发布的太平洋牡蛎基因组上。大规模关联分析揭示了负责扇贝生长调节的关键候选基因,并为繁殖计划中法氏梭菌的进一步遗传改良提供了标记。

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