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QTL analysis for resistance to preharvest sprouting in rice (Oryza sativa)

机译:水稻(Oryza sativa)对收获前发芽的抗性的QTL分析

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Preharvest sprouting (PHS) is caused by early breaking of seed dormancy. In Sichuan, a major hybrid rice seed production area of China, PHS in hybrid seeds originated from 'G46A' parent may lead to severe yield loss, causing serious damage to agricultural production. To detect quantitative trait loci (QTLs) governing PHS, we developed an F population of 164 plants derived from 'G46B' and 'K81', a near-isogenic introgression line of G46B, with high level of resistance to PHS. PHS was evaluated under controlled field and laboratory conditions. Using simple sequence repeat markers, we constructed a linkage map from this population and identified three QTLs for PHS, namely qPSR2, qPSR5 and qPSR8, which were located on chromosomes 2, 5 and 8, respectively. Among these QTLs, qPSR8, residing in the interval between RM447 and RM3754 on chromosome 8, was the major QTL controlling PHS, for it had a relative high logarithm of the odds (LOD) score and explained 43.04% of the phenotypic variation. These results were correspondent to those identified in extreme low germination rate plants (ELGP) using linkage and linkage disequilibrium. At all loci, 'K81' was responsible for enhancing the resistance to PHS.
机译:收获前发芽(PHS)是由种子休眠的早期中断引起的。在中国主要的杂交水稻种子产区四川,源自“ G46A”亲本的杂交种子中的PHS可能导致严重的产量损失,从而严重损害农业生产。为了检测控制PHS的数量性状基因座(QTL),我们开发了164种植物的F种群,这些植物来自“ G46B”和“ K81”(G46B的近等基因渗入系),对PHS具有高度抗性。在受控的现场和实验室条件下对PHS进行了评估。使用简单的序列重复标记,我们从该群体构建了一个连锁图,并鉴定了3个用于PHS的QTL,即qPSR2,qPSR5和qPSR8,它们分别位于2、5和8号染色体上。在这些QTL中,位于8号染色体RM447和RM3754之间的qPSR8是控制PHS的主要QTL,因为它具有较高的赔率(LOD)对数,并且可以解释43.04%的表型变异。这些结果与使用连锁和连锁不平衡在极低发芽率植物(ELGP)中鉴定的结果相对应。在所有基因座上,“ K81”负责增强对PHS的抗性。

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