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Quantitative Trait Loci (QTL) Analysis For Rice Grain Width and Fine Mapping of an Identified QTL Allele gw-5 in a Recombination Hotspot Region on Chromosome 5

机译:水稻粒宽的定量性状位点(QTL)分析和染色体5重组热点区域中已鉴定的QTL等位基因gw-5的精细作图

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摘要

Rice grain width and shape play a crucial role in determining grain quality and yield. The genetic basis of rice grain width was dissected into six additive quantitative trait loci (QTL) and 11 pairs of epistatic QTL using an F7 recombinant inbred line (RIL) population derived from a single cross between Asominori (japonica) and IR24 (indica). QTL by environment interactions were evaluated in four environments. Chromosome segment substitution lines (CSSLs) harboring the six additive effect QTL were used to evaluate gene action across eight environments. A major, stable QTL, qGW-5, consistently decreased rice grain width in both the Asominori/IR24 RIL and CSSL populations with the genetic background Asominori. By investigating the distorted segregation of phenotypic values of rice grain width and genotypes of molecular markers in BC4F2 and BC4F3 populations, qGW-5 was dissected into a single recessive gene, gw-5, which controlled both grain width and length–width ratio. gw-5 was narrowed down to a 49.7-kb genomic region with high recombination frequencies on chromosome 5 using 6781 BC4F2 individuals and 10 newly developed simple sequence repeat markers. Our results provide a basis for map-based cloning of the gw-5 gene and for marker-aided gene/QTL pyramiding in rice quality breeding.
机译:稻米的宽度和形状在决定稻米品质和单产方面起着至关重要的作用。利用Asominori(粳稻)和IR24(印度ica稻)之间的单次杂交获得的F7重组自交系(RIL)群体将稻米宽度的遗传基础分为六个加性定量性状位点(QTL)和11对上位性QTL。通过环境交互作用的QTL在四个环境中进行了评估。具有六个累加效应QTL的染色体区段替代品系(CSSL)用于评估八个环境中的基因作用。主要的,稳定的QTL qGW-5在具有遗传背景Asominori的Asominori / IR24 RIL和CSSL种群中均不断降低稻米宽度。通过研究BC4F2和BC4F3群体中水稻籽粒宽度表型值的扭曲分离和分子标记的基因型,将qGW-5分解为单个隐性基因gw-5,该基因同时控制了籽粒宽度和长宽比。使用6781 BC4F2个体和10个新开发的简单序列重复标记,将gw-5缩小到5号染色体上具有高重组频率的49.7-kb基因组区域。我们的结果提供了基于图谱的gw-5基因克隆以及标记辅助基因/ QTL金字塔在水稻育种中的基础。

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