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Localization of QTL for basal root thickness in japonica rice and effect of marker-assisted selection for a major QTL

机译:粳稻基根厚度的QTL定位及主要QTL的标记辅助选择效应

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Root traits are key components of plant adaptation to drought environment. By using a 120 recombined inbred lines (RILs) rice population derived from a cross between IRAT109, a japonica upland rice cultivar and Yuefu, a japonica lowland rice cultivar, a complete genetic linkage map with 201 molecular markers covering 1,833.8 cM was constructed and quantitative trait loci (QTLs) associated with basal root thickness (BRT) were identified. A major QTL, conferring thicker BRT, located on chromosome 4, designated brt4, explained phenotypic variance of 20.6%, was selected as target QTL to study the effects of marker-assisted selection (MAS) using two early segregating populations derived from crosses between IRAT109 and two lowland rice cultivars. The results showed that the flanking markers of brt4 were genetically stable in populations with different genetic backgrounds. In the two populations under upland conditions, the difference between the means of BRT of plants carrying positive and negative favorable alleles at brt4 flanking markers loci was significant. Phenotypic effects of BRT QTL brt4 were 5.05–8.16%. When selected plants for two generations were planted at Beijing and Hainan locations under upland conditions, MAS effects for BRT QTL brt4 were 4.56–18.56% and 15.46–26.52% respectively. The means of BRT for the homozygous plants were greater than that of heterozygous plants. This major QTL might be useful for rice drought tolerance breeding.
机译:根系性状是植物适应干旱环境的关键组成部分。利用120个重组自交系水稻群体,该群体来自于IRAT109,粳稻高地品种与岳府,粳稻低地水稻品种之间的杂交,构建了具有201个分子标记的完整遗传连锁图谱,涵盖了1,833.8 cM,并具有定量性状确定了与基部根部厚度(BRT)相关的基因座(QTL)。选择一个主要的QTL,将其赋予较厚的BRT,位于第4号染色体上,称为brt4,其表型变异解释为20.6%,被选为目标QTL,以使用两个来自IRAT109之间杂交的早期分离种群研究标记辅助选择(MAS)的效果和两个低地水稻品种。结果表明,brt4的侧翼标记在具有不同遗传背景的人群中遗传稳定。在两个处于高地条件下的种群中,在brt4侧翼标记位点携带正和负有利等位基因的植物的BRT方式之间存在显着差异。 BRT QTL brt4的表型效应为5.05-8.16%。在高地条件下,在北京和海南两地选择两代植物进行种植时,MAS对BRT QTL brt4的影响分别为4.56-18.56%和15.46-26.52%。纯合植物的BRT均值高于杂合植物。这个主要的QTL可能对水稻抗旱育种有用。

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