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Joint Mapping and Allele Mining of the Rolled Leaf Trait in Rice (Oryza sativa L.)

机译:水稻卷叶性状的联合定位和等位基因挖掘

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摘要

The rolled leaf trait, long considered to be a key component of plant architecture, represents an important target trait for improving plant architecture at the population level. We therefore performed linkage mapping using a set of 262 highly variable RILs from two rice cultivars (Minghui 63 and 02428) with minor differences in leaf rolling index (LRI) in conjunction with GWAS mapping of a random subset of the 1127 germplasms from the 3K Rice Genomes Project (3K Rice). A total of seven main-effect loci were found to underlie the transgressive segregation of progenies from parents with minor differences in LRI. Five of these loci were previously identified and two (qRl7b and qRl9b) are newly reported with additional evidence from GWAS mapping for qRl7b. A total of 18 QTLs were identified by GWAS, including four newly identified QTLs. Six QTLs were confirmed by linkage mapping with the above RIL population, and 83.3% were found to be consistent with previously reported loci based on comparative mapping. We also performed allele mining with representative SNPs and identified the elite germplasms for the improvement of rolled leaf trait. Most favorable alleles at the detected loci were contributed by various 3K Rice germplasms. By a re-scanning of the candidate region with more saturated SNP markers, we dissected the region harboring gRl4-2 into three subregions, in which the average effect on LRI was 3.5% with a range from 2.4 to 4.1% in the third subregion, suggesting the presence of a new locus or loci within this region. The representative SNPs for favorable alleles in the reliable QTLs which were consistently identified in both bi-parental mapping and GWAS, such as qRl4, qRl5, qRl6, qRl7a, and qRl7b will be useful for future molecular breeding programs for ideal plant type in rice.
机译:长期以来一直被认为是植物结构的重要组成部分的卷叶性状代表了在种群水平上改善植物结构的重要目标性状。因此,我们使用来自两个水稻品种(明恢63和02428)的262个高度可变的RIL进行了连锁定位,叶片滚动指数(LRI)略有差异,并结合GWAS定位了3K水稻的1127个种质的随机子集基因组计划(3K水稻)。总共发现了七个主要影响基因座,这些基因座是LRI差异较小的亲本从后代进行过性分离的基础。先前已鉴定出这些基因座中的五个,新近报道了两个基因座(qR17b和qR19b),并提供了来自GWAS定位qR17b的其他证据。 GWAS共鉴定了18个QTL,其中包括四个新鉴定的QTL。通过与上述RIL群体的连锁图谱确定了六个QTL,并且基于比较图谱发现83.3%与先前报道的基因座一致。我们还使用代表性SNPs进行了等位基因挖掘,并确定了优良种质以改善卷叶性状。检测到的基因座上最有利的等位基因是由各种3K水稻种质贡献的。通过重新扫描具有更多饱和SNP标记的候选区域,我们将包含gRl4-2的区域分为三个子区域,其中对LRI的平均影响为3.5%,在第三子区域中范围为2.4%至4.1%,提示此区域内存在新的基因座或基因座。在双亲作图和GWAS中一致确定的可靠QTL中有利等位基因的代表性SNP,例如qRl4,qRl5,qRl6,qRl7a和qRl7b,将对水稻理想植物类型的未来分子育种计划很有用。

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