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Pedigree-based genome re-sequencing reveals genetic variation patterns of elite backbone varieties during modern rice improvement

机译:基于谱系的基因组重测序揭示了现代水稻改良过程中主要骨干品种的遗传变异模式

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摘要

Rice breeding has achieved great productivity improvements by semi-dwarf varieties and hybrid vigour. Due to poor understanding of genetic basis of elite backbone varieties, the continuous increasing in rice yield still faces great challenges. Here, 52 elite rice varieties from three historical representative pedigrees were re-sequenced with 10.1× depth on average, and ~6.5 million single nucleotide polymorphisms (SNPs) were obtained. We identified thousands of low-diversity genomic regions and 0-diversity genes during breeding. Using pedigree information, we also traced SNP transmission patterns and observed breeding signatures in pedigree. These regions included the larger number of key well-known functional genes. Besides, 35 regions spanning 0.16% of the rice gnome had been differentially selected between conventional and restorer pedigrees. These genes identified here will be useful to the further pedigree breeding. Our study provides insights into the genetic basis of backbone varieties and will have immediate implications for performing genome-wide breeding by design.
机译:水稻育种已经通过半矮变种和杂种优势获得了极大的生产力提高。由于对优秀骨干品种遗传基础的了解不足,水稻单产的持续增加仍面临巨大挑战。在此,对三个历史代表性谱系的52个优良水稻品种进行了平均平均10.1倍深度的测序,并获得了约650万个单核苷酸多态性(SNP)。我们在育种过程中鉴定了数千个低多样性基因组区域和0多样性基因。利用谱系信息,我们还追踪了SNP的传播方式并观察了谱系中的育种特征。这些区域包括大量关键的众所周知的功能基因。此外,在传统谱系和恢复谱系之间有35个区域,分别占水稻侏儒系的0.16%。此处鉴定的这些基因将对进一步的系谱育种有用。我们的研究提供了对骨干品种遗传基础的见识,并将对通过设计进行全基因组育种具有直接的意义。

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