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A high-density SNP genetic linkage map for the silver-lipped pearl oyster, Pinctada maxima: a valuable resource for gene localisation and marker-assisted selection

机译:银唇牡蛎Pinctada maxima的高密度SNP遗传连锁图:基因定位和标记辅助选择的宝贵资源

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摘要

Background: The silver-lipped pearl oyster, Pinctada maxima, is an important tropical aquaculture species extensively farmed for the highly sought "South Sea" pearls. Traditional breeding programs have been initiated for this species in order to select for improved pearl quality, but many economic traits under selection are complex, polygenic and confounded with environmental factors, limiting the accuracy of selection. The incorporation of a marker-assisted selection (MAS) breeding approach would greatly benefit pearl breeding programs by allowing the direct selection of genes responsible for pearl quality. However, before MAS can be incorporated, substantial genomic resources such as genetic linkage maps need to be generated. The construction of a high-density genetic linkage map for P. maxima is not only essential for unravelling the genomic architecture of complex pearl quality traits, but also provides indispensable information on the genome structure of pearl oysters.\ud\udResults: A total of 1,189 informative genome-wide single nucleotide polymorphisms (SNPs) were incorporated into linkage map construction. The final linkage map consisted of 887 SNPs in 14 linkage groups, spans a total genetic distance of 831.7 centimorgans (cM), and covers an estimated 96% of the P. maxima genome. Assessment of sex-specific recombination across all linkage groups revealed limited overall heterochiasmy between the sexes (i.e. 1.15:1 F/M map length ratio). However, there were pronounced localised differences throughout the linkage groups, whereby male recombination was suppressed near the centromeres compared to female recombination, but inflated towards telomeric regions. Mean values of LD for adjacent SNP pairs suggest that a higher density of markers will be required for powerful genome-wide association studies. Finally, numerous nacre biomineralization genes were localised providing novel positional information for these genes.\ud\udConclusions: This high-density SNP genetic map is the first comprehensive linkage map for any pearl oyster species. It provides an essential genomic tool facilitating studies investigating the genomic architecture of complex trait variation and identifying quantitative trait loci for economically important traits useful in genetic selection programs within the P. maxima pearling industry. Furthermore, this map provides a foundation for further research aiming to improve our understanding of the dynamic process of biomineralization, and pearl oyster evolution and synteny.
机译:背景:唇唇银牡蛎牡蛎Pinctada maxima是重要的热带水产养殖品种,广泛种植以备受追捧的“南海”珍珠。已开始对该物种进行传统育种计划,以选择改善的珍珠品质,但所选择的许多经济性状复杂,多基因且与环境因素混杂在一起,限制了选择的准确性。通过允许直接选择负责珍珠质量的基因,引入标记辅助选择(MAS)育种方法将大大有益于珍珠育种计划。但是,在可以合并MAS之前,需要生成大量的基因组资源,例如遗传连锁图。 \\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\,\\\\\\\\\\\\\\\\\,\\\\\\\\\\\\\\\\\\\结果, 1,189信息性全基因组单核苷酸多态性(SNPs)被纳入连锁图的构建。最终的连锁图谱由14个连锁组中的887个SNP组成,跨越了831.7厘摩(cM)的总遗传距离,并覆盖了估计的P. maxima基因组的96%。对所有连锁族之间性别特异性重组的评估显示,性别之间总体异位性有限(即1.15:1 F / M图长度比)。但是,在整个连接基团之间存在明显的局部差异,与雌性重组相比,着丝粒附近的雄性重组受到抑制,但向端粒区域膨胀。相邻SNP对的LD平均值表明,强大的全基因组关联研究将需要更高密度的标记。最后,大量珍珠质生物矿化基因被定位,从而为这些基因提供了新颖的位置信息。\ ud \ ud结论:该高密度SNP遗传图谱是任何珍珠牡蛎物种的第一个综合连锁图谱。它提供了必要的基因组学工具,可促进研究复杂性状变异的基因组结构,并确定可用于经济性状的重要性状的定量性状基因座,这些重要性状可用于最大的珍珠产业中的遗传选择程序。此外,该图为进一步研究奠定了基础,旨在增进我们对生物矿化,珍珠牡蛎进化和同化的动态过程的理解。

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