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鉴定水稻粒重相关基因的优势单倍型及其组合,用于水稻的育种应用。

Identification of Superior Haplotypes and Haplotype Combinations for Grain Size- and Weight-Related Genes for Breeding Applications in Rice ( L.).

机构信息

Key Laboratory of Crop Molecular Breeding, Ministry of Agriculture and Rural Affairs/Hubei Key Laboratory of Food Crop Germplasm and Genetic Improvement, Institute of Food Crops, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.

Hubei Hongshan Laboratory, Wuhan 430070, China.

出版信息

Genes (Basel). 2023 Dec 12;14(12):2201. doi: 10.3390/genes14122201.

Abstract

The identification of superior haplotypes and haplotype combinations is essential for haplotype-based breeding (HBB), which provides selection targets for genomics-assisted breeding. In this study, genotypes of 42 functional genes in rice were analyzed by targeted capture sequencing in a panel of 180 rice accessions. In total, 69 SNPs/Indels in seven genes were detected to be associated with grain length (GL), grain width (GW), ratio of grain length-width (L/W) and thousand-grain weight (TGW) using candidate gene-based association analysis, including and for GL, for GW, and for L/W, and , , , and for TGW. Furthermore, two haplotypes were identified for each of the seven genes according to these associated SNPs/Indels, and the amount of genetic variation explained by different haplotypes ranged from 3.24% to 27.66%. Additionally, three, three and eight haplotype combinations for GL, L/W and TGW explained 25.38%, 5.5% and 22.49% of the total genetic variation for each trait, respectively. Further analysis showed that Minghui63 had the superior haplotype combination Haplotype Combination 4 (HC4) for TGW. The most interesting finding was that some widely used restorer lines derived from Minghui63 also have the superior haplotype combination HC4, and our breeding varieties and lines using the haplotype-specific marker panel also confirmed that the TGW of the lines was much higher than that of their sister lines without HC4, suggesting that TGW-HC4 is the superior haplotype combination for TGW and can be utilized in rice breeding.

摘要

鉴定优势单倍型和单倍型组合对于基于单倍型的育种(HBB)至关重要,它为基因组辅助育种提供了选择目标。在这项研究中,通过对 180 个水稻品种进行靶向捕获测序,分析了水稻 42 个功能基因的基因型。在总共 69 个 SNP/Indel 在七个基因中被检测到与粒长(GL)、粒宽(GW)、长宽比(L/W)和千粒重(TGW)相关,使用候选基因关联分析,包括 和 用于 GL, 用于 GW, 用于 L/W, , , , 和 用于 TGW。此外,根据这些相关的 SNP/Indel,为每个基因确定了两个单倍型,不同单倍型解释的遗传变异量从 3.24%到 27.66%不等。此外,GL、L/W 和 TGW 的三个、三个和八个单倍型组合分别解释了每个性状总遗传变异的 25.38%、5.5%和 22.49%。进一步分析表明,明恢 63 具有优异的单倍型组合 TGW 的单倍型组合 4(HC4)。最有趣的发现是,一些广泛使用的明恢 63 恢复系也具有优异的单倍型组合 HC4,而我们使用单倍型特异性标记面板的育种品种和系也证实,带有 HC4 的系的 TGW 明显高于没有 HC4 的姊妹系,表明 TGW-HC4 是 TGW 的优势单倍型组合,可用于水稻育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c2/10742856/684f7b5aa835/genes-14-02201-g001.jpg

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