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Association Mapping of Yield and Yield-related Traits Under Reproductive Stage Drought Stress in Rice (Oryza sativa L.)

机译:稻米生殖阶段干旱胁迫下产量和产量相关性状的关联映射(Oryza Sativa L.)

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摘要

Abstract Background The identification and introgression of major-effect QTLs for grain yield under drought are some of the best and well-proven approaches for improving the drought tolerance of rice varieties. In the present study, we characterized Malaysian rice germplasm for yield and yield-related traits and identified significant trait marker associations by structured association mapping. Results The drought screening was successful in screening germplasm with a yield reduction of up to 60% and heritability for grain yield under drought was up to 78%. There was a wider phenotypic and molecular diversity within the panel, indicating the suitability of the population for quantitative trait loci (QTL) mapping. Structure analyses clearly grouped the accessions into three subgroups with admixtures. Linkage disequilibrium (LD) analysis revealed that LD decreased with an increase in distance between marker pairs and the LD decay varied from 5–20 cM. The Mixed Linear model-based structured association mapping identified 80 marker trait associations (MTA) for grain yield (GY), plant height (PH) and days to flowering (DTF). Seven MTA were identified for GY under drought stress, four of these MTA were consistently identified in at least two of the three analyses. Most of these MTA identified were on chromosomes 2, 5, 10, 11 and 12, and their phenotypic variance (PV) varied from 5% to 19%. The in silico analysis of drought QTL regions revealed the association of several drought-responsive genes conferring drought tolerance. The major-effect QTLs are useful in marker-assisted QTL pyramiding to improve drought tolerance. Conclusion The results have clearly shown that structured association mapping is one of the feasible options to identify major-effect QTLs for drought tolerance-related traits in rice.
机译:摘要背景下干旱粮食产量主要效应QTL的鉴定和缺陷是提高水稻品种耐旱性的最佳和经过精心验证的方法。在本研究中,我们表征了马来西亚水稻种质,用于产量和产量相关的性状,并通过结构性协会映射确定了重要的特征标记关联。结果干旱筛选成功筛选种质,产量降低高达60%,粮食产量下的遗传性高达78%。面板内部有更广泛的表型和分子多样性,表明群体用于定量特质基因座(QTL)映射的适用性。结构分析清楚地将遗传分为三个亚组,其中包含外加剂。连锁不平衡(LD)分析显示,LD随着标记对与标记对之间的距离的增加而降低,并且LD衰减从5-20cm变化。基于混合线性模型的结构化关联映射鉴定了用于谷物产量(GY),植物高度(pH)和开花(DTF)的植物高度(pH)和天的80个标记性状关联(MTA)。在干旱胁迫下鉴定出七种MTA,其中四种MTA中的四种在三种分析中的至少两种分析中始终鉴定。鉴定的大多数MTA均在染色体2,5,10,11和12上,它们的表型方差(PV)不同于5%至19%。干旱QTL区域的硅分析显示了几种促进耐旱性耐旱基因的关联。主要效果QTL在标记辅助QTL金字塔中有用,以改善耐旱性。结论结果清楚地表明,结构化关联映射是识别水稻中干旱耐受性相关性的主要效果QTL的可行性选项之一。

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