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Fine Mapping and Haplotype Structure Analysis of a Major Flowering Time Quantitative Trait Locus on Maize Chromosome 10

机译:玉米第10染色体主要开花时间定量性状基因座的精细定位和单倍型结构分析

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Flowering time is a major adaptive trait in plants and an important selection criterion for crop species. In maize, however, little is known about its molecular basis. In this study, we report the fine mapping and characterization of a major quantitative trait locus located on maize chromosome 10, which regulates flowering time through photoperiod sensitivity. This study was performed in near-isogenic material derived from a cross between the day-neutral European flint inbred line FV286 and the tropical short-day inbred line FV331. Recombinant individuals were identified among a large segregating population and their progenies were scored for flowering time. Combined genotypic characterization led to delimit the QTL to an interval of 170 kb and highlighted an unbalanced recombination pattern. Two bacterial artificial chromosomes (BACs) covering the region were analyzed to identify putative candidate genes, and synteny with rice, sorghum, and brachypodium was investigated. A gene encoding a CCT domain protein homologous to the rice Ghd7 heading date regulator was identified, but its causative role was not demonstrated and deserves further analyses. Finally, an association study showed a strong level of linkage disequilibrium over the region and highlighted haplotypes that could provide useful information for the exploitation of genetic resources and marker-assisted selection in maize.
机译:开花时间是植物的主要适应性状,也是作物品种的重要选择标准。然而,在玉米中,对其分子基础知之甚少。在这项研究中,我们报告了位于玉米第10号染色体上主要定量性状基因座的精细定位和特征,该基因座通过光周期敏感性调节开花时间。这项研究是在近等基因材料中进行的,该材料来自日中性欧洲fl石自交系FV286和热带短日自交系FV331之间的杂交。在大量的隔离种群中鉴定了重组个体,并对其后代的开花时间进行了评分。组合的基因型表征导致将QTL限定为170 kb的间隔,并突出显示了不平衡的重组模式。分析了覆盖该区域的两个细菌人工染色体(BAC),以鉴定推定的候选基因,并研究了与水稻,高粱和腕足动物的同源性。已鉴定出编码与水稻Ghd7抽穗期调节剂同源的CCT域蛋白的基因,但其致病作用尚未得到证实,值得进一步分析。最后,一项关联研究显示该地区连锁不平衡的水平很高,并强调了单倍型,可以为玉米遗传资源的开发和标记辅助选择提供有用的信息。

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