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QTL mapping for late leaf spot and rust resistance using an improved genetic map and extensive phenotypic data on a recombinant inbred line population in peanut (Arachis hypogaea L.)

机译:使用改进的遗传图谱和对花生重组近交系群的改进的遗传图谱和耐锈性数据进行后叶斑和耐锈性的QTL映射和耐锈性数据(Arachis Hypogaea L.)

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摘要

The linkage map for the recombinant inbred line (RIL) mapping population derived from late leaf spot (LLS) and rust disease susceptible (TAG 24) and resistant (GPBD 4) varieties of peanut was improved by adding 139 new SSR and transposable element (TE) markers. The improved map now has 289 mapped loci with a total map distance of 1730.8 cM and average inter-marker distance of 6.0 cM across 20 linkage groups. Quantitative trait loci (QTL) analysis using improved genetic map with 289 markers and comprehensive phenotypic data for LLS and rust from 11 seasons could identify a region on linkage group AhXV (B03 linkage group of B genome) which contributed significantly towards LLS and rust resistance. Of the five QTL mapped in this region, three showed high phenotypic variance explained (PVE) for both LLS and rust, and two QTL showed high PVE for only rust. The QTL flanked by GM2009-IPAHM103 had very high PVE of 44.5 % and 53.7 %, respectively for LLS and rust response. Another genomic region on AhXII (B10 linkage group of B genome) contained a QTL flanked by GM1839-GM1009 which had a PVE of 14.1–35.2 % for LLS resistance. A new QTL with marker interval GM1989-AhTE0839 on AhV (A05 linkage group of A genome) showed a PVE of 10.2 % for rust resistance. The new markers, AhTE0498 and AhTE0928 linked to rust resistance were validated using another RIL population of TG 26 × GPBD 4. The marker AhTE0498 showed 49.3–52.3 % PVE, indicating a strong marker validation in the new population. The improved map, QTL and markers for LLS and rust resistance reported in this study will be of immense utility in peanut molecular breeding.
机译:通过加入139个新的SSR和转换元件,改善了来自晚叶斑(LLS)和腐败易感性(标签24)和耐锈病(标签4)和抗性(GPBD 4)的花生(GPBD 4)各种花生的联系地图标记。改进的地图现在具有289个映射的基因座,总映射距离为1730.8厘米,平均标记距离为6.0厘米,横跨20厘米的距离为20厘米。使用改进的遗传图谱的定量性状基因座(QTL)分析具有289个标记和LLS的综合表型数据和11个赛季的RUCT,可以识别联动组AHXV(B03联动组的B基因组)的区域,这对LLS和铁锈造成了显着贡献。在该地区映射的五个QTL中,三种表现出高表型方差(PVE),用于LLS和RUDE,两个QTL仅为RUDE显示出高PVE。 GM2009-IPAHM103侧翼的QTL分别具有44.5%和53.7%的高度为44.5%和53.7%,用于LLS和防锈反应。 AHXII(B10的B10联系组B基因组的B10连锁组)的另一个基因组区域含有GM1839-GM1009的QTL,其PVE为14.1-35.2%的L1S抗性。 AHV上具有标记间隔GM1989-AHTE0839的新QTL(A05联动组的基因组)显示出耐锈性的10.2%。使用另一种TG 26×GPBD 4的RIL群体验证了与铁锈电阻相关的新标记,AHTE0498和AHTE0928。标记AHTE0498显示49.3-52.3%PVE,表明新人群中的强烈标记验证。本研究中已报告的改进的地图,QTL和LLS和铁锈阻力的标记将是花生分子育种的巨大效用。

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