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QTL analysis on rice grain appearance quality, as exemplifying the typical events of transgenic or backcrossing breeding

机译:QTL水稻谷物外观质量分析,举例说明转基因或回复育种的典型事件

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摘要

Rice grain shape and yield are usually controlled by multiple quantitative trait loci (QTL). This study used a set of F9-10 recombinant inbred lines (RILs) derived from a cross of Huahui 3 (Bt/Xa21) and Zhongguoxiangdao, and detected 27 QTLs on ten rice chromosomes. Among them, twelve QTLs responsive for grain shape/ or yield were mostly reproducibly detected and had not yet been reported before. Interestingly, the two known genes involved in the materials, with one insect-resistant Bt gene, and the other disease-resistant Xa21 gene, were found to closely link the QTLs responsive for grain shape and weight. The Bt fragment insertion was firstly mapped on the chromosome 10 in Huahui 3 and may disrupt grain-related QTLs resulting in weaker yield performance in transgenic plants. The introgression of Xa21 gene by backcrossing from donor material into receptor Minghui 63 may also contain a donor linkage drag which included minor-effect QTL alleles positively affecting grain shape and yield. The QTL analysis on rice grain appearance quality exemplified the typical events of transgenic or backcrossing breeding. The QTL findings in this study will in the future facilitate the gene isolation and breeding application for improvement of rice grain shape and yield.
机译:水稻颗粒形状和产率通常由多种定量性状基因座(QTL)控制。本研究使用了一组F9-10重组近交系(RILS)衍生自Huahui 3(BT / XA21)和中冠岛的十字架,并在10米染色体上检测到27个QTL。其中,12个QTL响应晶粒形状/或产量主要是可重复的,并且尚未在之前报道。有趣的是,涉及一种抗虫BT基因和其他抗病XA21基因的材料中涉及的已知基因与响应晶粒形状和重量相应地将QTLS紧密联系起来。首先将BT片段插入在华富3的染色体10上映射,并且可能破坏晶粒类QTL,导致转基因植物中的产量性能较弱。通过从供体材料转移到受体Minghui 63中的XA21基因的迟发还可含有供体连接阻力,其包括微小影响晶粒形状和产率的微小效果QTL等位基因。水稻晶粒外观质量的QTL分析示例了转基因或回复育种的典型事件。本研究中的QTL调查结果将在未来促进基因分离和育种应用,以改善水稻晶粒形状和产量。

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