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首页> 外文期刊>Molecular Breeding >Quantitative trait locus analysis and construction of consensus genetic map for foliar disease resistance based on two recombinant inbred line populations in cultivated groundnut (Arachis hypogaea L.)
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Quantitative trait locus analysis and construction of consensus genetic map for foliar disease resistance based on two recombinant inbred line populations in cultivated groundnut (Arachis hypogaea L.)

机译:基于两个重组花生自交系群体的叶片抗病性状的数量性状基因座分析和共有遗传图谱的构建

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Late leaf spot (LLS) and rust have the greatest impact on yield losses worldwide in groundnut (Arachis hypogaea L.). With the objective of identifying tightly linked markers to these diseases, a total of 3,097 simple sequence repeats (SSRs) were screened on the parents of two recombinant inbred line (RIL) populations, namely TAG 24 x GPBD 4 (RIL-4) and TG 26 x GPBD 4 (RIL-5), and segregation data were obtained for 209 marker loci for each of the mapping populations. Linkage map analysis of the 209 loci resulted in the mapping of 188 and 181 loci in RIL-4 and RIL-5 respectively. Using 143 markers common to the two maps, a consensus map with 225 SSR loci and total map distance of 1,152.9 cM was developed. Comprehensive quantitative trait locus (QTL) analysis detected a total of 28 QTL for LLS and 15 QTL for rust. A major QTL for LLS, namely QTL(LLS)01 (GM1573/GM1009-pPGPseq8D09), with 10.27-62.34% phenotypic variance explained (PVE) was detected in all the six environments in the RIL-4 population. In the case of rust resistance, in addition to marker IPAHM103 identified earlier, four new markers (GM2009, GM1536, GM2301 and GM2079) showed significant association with the major QTL (82.96% PVE). Localization of 42 QTL for LLS and rust on the consensus map identified two candidate genomic regions conferring resistance to LLS and rust. One region present on linkage group AhXV contained three QTL each for LLS (up to 67.98% PVE) and rust (up to 82.96% PVE). The second candidate genomic region contained the major QTL with up to 62.34% PVE for LLS. Molecular markers associated with the major QTL for resistance to LLS and rust can be deployed in molecular breeding for developing groundnut varieties with enhanced resistance to foliar diseases.
机译:晚发叶斑病(LLS)和铁锈对全世界花生(Arachis hypogaea L.)的产量损失影响最大。为了鉴定与这些疾病紧密相关的标志物,在两个重组自交系(RIL)群体的父母中筛选了总共3,097个简单序列重复(SSR),即TAG 24 x GPBD 4(RIL-4)和TG对于每个作图群体,分别获得26 x GPBD 4(RIL-5)和209个标记基因座的分离数据。对209个基因座的连锁图谱分析分别导致了RIL-4和RIL-5中188和181个基因座的作图。使用这两个图共有的143个标记,开发了一个具有225个SSR位点,总图距离为1,152.9 cM的共有图。全面的数量性状基因座(QTL)分析检测到总共28个QTL的LLS和15个QTL的铁锈。在RIL-4人群的所有六个环境中均检测到LLS的主要QTL,即QTL(LLS)01(GM1573 / GM1009-pPGPseq8D09),其表型变异解释为(PVE)10.27-62.34%。在防锈方面,除较早发现的标记IPAHM103外,还有四个新标记(GM2009,GM1536,GM2301和GM2079)与主要QTL显着相关(PVE为82.96%)。在共有图谱上对LLS和铁锈的42个QTL的定位确定了两个候选基因组区域,它们赋予了对LLS和铁锈的抗性。存在于连锁群AhXV上的一个区域包含三个QTL,分别用于LLS(高达67.98%PVE)和铁锈(高达82.96%PVE)。第二个候选基因组区域包含主要QTL,其中LLS的PVE高达62.34%。与主要的QTL有关的LLS和铁锈抗性相关的分子标记可以部署在分子育种中,以开发对叶面病具有增强抗性的花生品种。

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