Key Laboratory of Genetics, Breeding and Multiple Utilization of Crops, Ministry of Education, College of Agriculture/College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Fujian Provincial Key Laboratory of Crop Breeding by Design, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Int J Mol Sci. 2022 Sep 6;23(18):10258. doi: 10.3390/ijms231810258.
High-density genetic maps can significantly improve the resolution of QTL mapping. We constructed a high-density recombination bin-based genetic map of eggplant based on 200 F plants from an interspecific cross ( × ) using the whole genome resequencing strategy. The map was 2022.8 cM long, covering near 99% of the eggplant genome. The map contained 3776 bins, with 3644 (96.5%) being effective (position non-redundant) ones, giving a nominal average distance of 0.54 cM and an effective average distance of 0.56 cM between adjacent bins, respectively. Using this map and 172 F lines, a major QTL with pleiotropic effects on two anthocyanin pigmentation-related traits, leaf vein color (LVC) and fruit pericarp color (FPC), was steadily detected in a bin interval of 2.28 cM (or 1.68 Mb) on chromosome E10 in two cropping seasons, explaining ~65% and 55% of the phenotypic variation in LVC and FPC, respectively. Genome-wide association analysis in this population validated the QTL and demonstrated the correctness of mapping two bins of chromosome E02 onto E10. Bioinformatics analysis suggested that a WDR protein gene inside the bin interval with reliable effective variation between the two parents could be a possible candidate gene of the QTL.
高密度遗传图谱可以显著提高 QTL 作图的分辨率。我们利用全基因组重测序策略,从种间杂交(×)的 200 个 F1 植株中构建了茄子高密度基于重组 bin 的遗传图谱。图谱全长 2022.8cM,覆盖了茄子基因组的近 99%。图谱包含 3776 个 bin,其中 3644 个(96.5%)为有效(位置非冗余)bin,标记平均间距为 0.54cM,相邻 bin 的有效平均间距为 0.56cM。利用该图谱和 172 个 F2 株系,在两个种植季节中,在染色体 E10 上 2.28cM(或 1.68Mb)的 bin 区间内稳定检测到一个对两个花青素色素相关性状(叶脉颜色(LVC)和果皮颜色(FPC))具有多效性影响的主 QTL,分别解释了 LVC 和 FPC 表型变异的约 65%和 55%。在该群体中的全基因组关联分析验证了该 QTL,并证明了将染色体 E02 的两个 bin 映射到 E10 的正确性。生物信息学分析表明,在两个亲本之间具有可靠有效变异的 bin 区间内的一个 WD 重复蛋白基因可能是该 QTL 的一个候选基因。