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Genome-wide association mapping of yield components and drought tolerance-related traits in cotton

机译:基因组 - 棉花产量组分和干旱耐受性相关性映射

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Drought causes serious yield losses in cotton production throughout the world. Association mapping allows identification and localization of the genes controlling drought-related traits which will be helpful in cotton breeding. In the present study, genetic diversity analysis and association mapping of yield and drought traits were performed on a panel of 99 upland cotton genotypes using 177 SSR (simple sequence repeat) markers. Yield parameters and drought tolerance-related traits were evaluated for two seasons under two watering regimes: water-stressed and well-watered. The traits included seed cotton yield (SCY), lint yield (LY), lint percentage (LP), water-use efficiency (WUE), yield potential (YP), yield reduction (YR), yield index (YI), drought sensitivity index (DSI), stress tolerance index (STI), harmonic mean (HM), and geometric mean productivity (GMP). The genotypes with the least change in seed cotton yield under drought stress were Zeta 2, Delcerro, Nazilli 87, and DAK 66/3 which were also the most water-use efficient cultivars. The average genetic diversity of the panel was 0.38. The linkage disequilibrium decayed relatively rapidly at 20-30 cM (r (2) ae&yen& 0.5). We identified 30 different SSR markers associated with the traits. Fifteen and 23 SSR markers were linked to the traits under well-watered and water-stress conditions, respectively. To our knowledge, most of these quantitative yield and drought tolerance-associated loci were newly identified. The genetic diversity and association mapping results should facilitate the development of drought-tolerant cotton lines with high yield in molecular breeding programs.
机译:干旱导致全世界棉花生产中的严重产量损失。关联映射允许识别和定位控制干旱相关性状的基因,这将有助于棉花繁殖。在本研究中,在使用177SSR(简单序列重复)标记的99个Upland棉基因型面板上进行产量和干旱性状的遗传多样性分析和结合映射。在两个浇水制度下评估产量参数和耐旱性相关的特性:水胁迫和浇水。该特征包括种子棉花产率(SCY),棉绒产量(LY),棉绒百分比(LP),水使用效率(WUE),产量潜力(YP),产量还原(YR),产量指数(yi),干旱敏感性索引(DSI),应力公差指数(STI),谐波平均值(HM)和几何平均生产率(GMP)。干旱胁迫下种子棉产量最少的基因型是Zeta 2,甲基释酒,Nazilli 87,以及Dak 66/3,也是最具吸水有效的品种。面板的平均遗传多样性为0.38。连锁不平衡在20-30cm(r(2)ae& yen& 0.5)中相对较快地衰减。我们确定了与特征相关的30个不同的SSR标记。十五和23个SSR标记分别与浇水和水胁迫条件下的特征有关。据我们所知,新发现了大多数这些定量产量和耐旱相关基因座。遗传多样性和关联映射结果应促进具有高产分子育种计划的耐旱棉线的发展。

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