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基于高密度重组 bin 的遗传图谱的构建有助于茄子花青素着色主 QTL 的高分辨率作图。

Construction of a High-Density Recombination Bin-Based Genetic Map Facilitates High-Resolution Mapping of a Major QTL Underlying Anthocyanin Pigmentation in Eggplant.

机构信息

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.

出版信息

Int J Mol Sci. 2022 Sep 6;23(18):10258. doi: 10.3390/ijms231810258.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a40e/9499331/25bd5b4c58d0/ijms-23-10258-g001.jpg

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