Dalian Ocean University, Key Laboratory of Mariculture & Stock Enhancement in North China's Sea, Ministry of Agriculture, Dalian Liaoning, 116023, China.
Biomarker technology Corporation, Beijing, 101300, China.
Sci Rep. 2018 Jan 16;8(1):820. doi: 10.1038/s41598-017-18768-y.
Sea urchin (Strongylocentrotus intermedius) has long been a model species for developmental and evolutionary research, but only a few studies have focused on gene mapping. Here, we reported a high-density genetic map containing 4,387 polymorphism specific-length amplified fragment (SLAF) markers spanning 21 linkage groups (LG) for sea urchin. Based on this genetic map and phenotyping data for eight economic traits, 33 potentially significant QTLs were detected on ten different LGs with explanations ranging from 9.90% to 46.30%, partly including 10 QTLs for test diameter, six QTLs for body weight and eight QTLs for Aristotle's lantern weight. Moreover, we found a QTL enrichment LG, LG15, gathering QTLs for test diameter, body weight, gonad weight, light orange-yellow color difference (≥E) and light yellow color difference (≥E). Among all QTLs, we genotyped four QTLs for test diameter, Aristotle's lantern weight and body weight using High Resolution Melting (HRM) technology. Finally, we used the verified SNP marker (detected using SLAF sequencing) to explore their marker-assisted selection (MAS) breeding application potential and found that SNP-29 associated tightly with body weight and that heterozygous genotype was a dominant genotype, indicating that SNP-29 was a promising marker for MAS.
海胆(Strongylocentrotus intermedius)长期以来一直是发育和进化研究的模式生物,但仅有少数研究集中在基因图谱构建上。在这里,我们报道了一张包含 4387 个多态性特异长度扩增片段(SLAF)标记的高密度遗传图谱,这些标记覆盖了 21 个连锁群(LG)。基于这个遗传图谱和 8 个经济性状的表型数据,在 10 个不同的 LG 上检测到了 33 个可能的显著 QTL,解释率从 9.90%到 46.30%不等,其中包括 10 个用于测试直径的 QTL、6 个用于体重的 QTL 和 8 个用于 Aristotle 灯笼重量的 QTL。此外,我们发现了一个富含 QTL 的 LG15,聚集了用于测试直径、体重、性腺重量、亮橙黄色差(≥E)和浅黄色差(≥E)的 QTL。在所有的 QTL 中,我们使用高分辨率熔解(HRM)技术对 4 个用于测试直径、Aristotle 灯笼重量和体重的 QTL 进行了基因型分析。最后,我们使用经过验证的 SNP 标记(通过 SLAF 测序检测到)探索其标记辅助选择(MAS)育种应用潜力,发现 SNP-29 与体重紧密相关,杂合基因型为显性基因型,表明 SNP-29 是一个很有前途的 MAS 标记。