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首页> 外文期刊>Rice >Genome-wide Association Study of a?Panel of Vietnamese Rice Landraces Reveals New QTLs for Tolerance to Water Deficit During the Vegetative Phase
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Genome-wide Association Study of a?Panel of Vietnamese Rice Landraces Reveals New QTLs for Tolerance to Water Deficit During the Vegetative Phase

机译:越南大米地区的基因组 - 型协会研究越南稻田展示了新的QTL在营养阶段期间对水赤字的耐受性

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Background Drought tolerance is a major challenge in breeding rice for unfavorable environments. In this study, we used a panel of 180 Vietnamese rice landraces genotyped with 21,623 single-nucleotide polymorphism markers to perform a genome-wide association study (GWAS) for different drought response and recovery traits during the vegetative stage. These landraces originate from different geographical locations and are adapted to different agrosystems characterized by contrasted water regimes. Vietnamese landraces are often underrepresented in international panels used for GWAS, but they can contain original genetic determinants related to drought resistance. Results The panel of 180 rice varieties was phenotyped under greenhouse conditions for several drought-related traits in an experimental design with 3 replicates. Plants were grown in pots for 4 weeks and drought-stressed by stopping irrigation for an additional 4 weeks. Drought sensitivity scores and leaf relative water content were measured throughout the drought stress. The recovery capacity was measured 2 weeks after plant rewatering. Several QTLs associated with these drought tolerance traits were identified by GWAS using a mixed model with control of structure and kinship. The number of detected QTLs consisted of 14 for leaf relative water content, 9 for slope of relative water content, 12 for drought sensitivity score, 3 for recovery ability and 1 for relative crop growth rate. This set of 39 QTLs actually corresponded to a total of 17 different QTLs because 9 were simultaneously associated with two or more traits, which indicates that these common loci may have pleiotropic effects on drought-related traits. No QTL was found in association with the same traits in both the indica and japonica subpanels. The possible candidate genes underlying the quantitative trait loci are reviewed. Conclusions Some of the identified QTLs contain promising candidate genes with a function related to drought tolerance by osmotic stress adjustment.
机译:背景技术干旱耐受性是育种不利环境的主要挑战。在这项研究中,我们使用了一个180个越南大米地体基因分型,与21,623个单核苷酸多态性标记物进行了基因分型,以在营养期间进行不同干旱反应和恢复性状的基因组 - 宽的关联研究(Gwas)。这些实体源自不同的地理位置,适应不同的农药,其特征在于水分制度。越南地区经常在用于GWA的国际面板中经常代表性,但它们可以包含与抗旱性有关的原始遗传决定因素。结果180个水稻品种的小组在温室条件下表现出几种与实验设计中的几种干旱相关的性状,3种重复。植物在盆中种植4周,并通过停止灌溉额外4周的灌溉胁迫。在整个干旱胁迫下测量干旱敏感性评分和叶相对含水量。植物再次化后2周测量回收能力。 GWAS使用具有控制结构和血缘关系的混合模型来识别与这些干旱耐受性相关的几个QTL。检测到的QTL的数量由14个相对含水量,9,用于相对含水量的坡度,12种,用于干旱敏感性得分,3用于回收能力,1个相对作物生长速度。这组39 QTL实际上与总共17个不同的QTLS相对应,因为9同时与两个或更多个特征相关联,这表明这些常见的基因座可能对干旱相关的性质具有抗性效应。没有QTL与籼稻和粳稻亚单板的相同性状相关联。综述了定量特质基因座的可能候选基因。结论一些鉴定的QTLs含有有前途的候选基因,其功能与渗透压力调节有关的耐旱性。

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