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首页> 外文期刊>Plant Biotechnology Journal >Genome‐wide association analyses reveal the genetic basis of combining ability in rice
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Genome‐wide association analyses reveal the genetic basis of combining ability in rice

机译:基因组 - 范围协会分析揭示了水稻中结合能力的遗传基础

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Combining ability is a measure for selecting elite parents and predicting hybrid performance in plant breeding. However, the genetic basis of combining ability remains unclear and a global view of combining ability from diverse mating designs is lacking. We developed a North Carolina II (NCII) population of 96 Oryza sativa and four male sterile lines to identify parents of greatest value for hybrid rice production. Statistical analyses indicated that general combining ability (GCA) and specific combining ability (SCA) contributed variously to different agronomic traits. In a genome‐wide association study (GWAS) of agronomic traits, GCA and SCA, we identified 34 significant associations (P??2.39?×?10sup?7/sup). The superior alleles of GCA loci (Ghd8, GS3 and qSSR4) accumulated in parental lines with high GCA and explained 30.03% of GCA variance in grain yield, indicating that molecular breeding of high GCA parental lines is feasible. The distinct distributions of these QTLs contributed to the differentiation of parental GCA in subpopulations. GWAS of SCA identified 12 more loci that showed dominance on corresponding agronomic traits. We conclude that the accumulation of superior GCA and SCA alleles is an important contributor to heterosis and QTLs that greatly contributed to combining ability in our study would accelerate the identification of elite inbred lines and breeding of super hybrids.
机译:结合能力是选择精英父母的措施,并预测植物育种中的杂化性能。然而,结合能力的遗传基础仍然尚不清楚,缺乏来自各种交配设计的组合能力的全球观点。我们开发了北卡罗来纳州II(NCII)的96个奥西·萨蒂加和四条雄性无菌线,以确定杂交水稻生产最大价值的父母。统计分析表明,一般结合能力(GCA)和特定的组合能力(SCA)对不同的农艺性状有不同的贡献。在农艺性状的基因组关联研究(GWAS)中,GCA和SCA,我们确定了34个重要的关联(p ?? 2.39?×10 ?7 )。 GCA基因座(GHD8,GS3和QSSR4)的优质等位基因在具有高GCA的父母系中累积,并解释了籽粒产量的30.03%的GCA差异,表明高GCA父母线的分子育种是可行的。这些QTL的明显分布有助于患有父母生理群体的差异。 SCA的GWA确定了12个位于相应农艺性状的主导地位。我们得出结论,高级GCA和SCA等位基因的积累是杂种优势和QTL的重要贡献者,这大大促进了我们研究中的能力,将加速鉴定精英近交系和超级杂种的繁殖。

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