首页> 外文期刊>Plant Biotechnology Journal >Haplotype analysis of key genes governing grain yield and quality traits across 3K RG panel reveals scope for the development of tailor‐made rice with enhanced genetic gains
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Haplotype analysis of key genes governing grain yield and quality traits across 3K RG panel reveals scope for the development of tailor‐made rice with enhanced genetic gains

机译:3K RG面板治疗谷物产量和质量性状的关键基因的单倍型分析揭示了测量稻米的发展范围,具有增强的遗传收益

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Though several genes governing various major traits have been reported in rice, their superior haplotype combinations for developing ideal variety remains elusive. In this study, haplotype analysis of 120 previously functionally characterized genes, influencing grain yield (87 genes) and grain quality (33 genes) revealed significant variations in the 3K rice genome (RG) panel. For selected genes, meta‐expression analysis using already available datasets along with co‐expression network provided insights at systems level. Also, we conducted candidate gene based association study for the 120 genes and identified 21 strongly associated genes governing 10‐grain yield and quality traits. We report superior haplotypes upon phenotyping the subset of 3K RG panel, SD1‐H8 with haplotype frequency (HF) of 30.13% in 3K RG panel, MOC1‐H9 (HF: 23.08%), IPA1‐H14 (HF: 6.64%), DEP3‐H2 (HF: 5.59%), DEP1‐H2 (HF: 37.53%), SP1‐H3 (HF: 5.05%), LAX1‐H5 (HF: 1.56%), LP‐H13 (3.64%), OSH1‐H4 (5.52%), PHD1‐H14 (HF: 15.21%), AGO7‐H15 (HF: 3.33%), ROC5‐H2 (31.42%), RSR1‐H8 (HF: 4.20%) and OsNAS3‐H2 (HF: 1.00%). For heading date, Ghd7‐H8 (HF: 3.08%), TOB1‐H10 (HF: 4.60%) flowered early, Ghd7‐H14 (HF: 42.60%), TRX1‐H9 (HF: 27.97%), OsVIL3‐H14 (HF: 1.72%) for medium duration flowering, while Ghd7‐H6 (HF: 1.65%), SNB‐H9 (HF: 9.35%) were late flowering. GS5‐H4 (HF: 65.84%) attributed slender, GS5‐H5 (HF: 29.00%), GW2‐H2 (HF: 4.13%) were medium slender and GS5‐H9 (HF: 2.15%) for bold grains. Furthermore, haplotype analysis explained possible genetic basis for superiority of selected mega‐varieties. Overall, this study suggests the possibility for developing next‐generation tailor‐made rice with superior haplotype combinations of target genes suiting future food and nutritional demands via haplotype‐based breeding.
机译:虽然在水稻中报告了几种治疗各种主要性状的基因,但它们的优越单倍型组合用于发展理想品种仍然是难以捉摸的。在该研究中,60例先前功能表征基因的单倍型分析,影响谷物产量(87个基因)和粒度(33基因)显示出3K水稻基因组(RG)面板的显着变化。对于所选基因,使用已经可用数据集的元表达分析以及共表达网络提供了系统级别的见解。此外,我们对120种基因进行了基于基于基因基因的关联研究,并确定了10粒产量和质量性状的21种强烈相关基因。我们在3K RG面板的子集中报告卓越的单倍型,在3K RG面板中为30.13%的单倍型频率(HF),MOC1-H9(HF:23.08%),IPA1-H14(HF:6.64%), DEP3-H2(HF:5.59%),DEP1-H2(HF:37.53%),SP1-H3(HF:5.05%),LAX1-H5(HF:1.56%),LP-H13(3.64%),OSH1- H4(5.52%),PHD1-H14(HF:15.21%),前7-H15(HF:3.33%),ROC5-H2(31.42%),RSR1-H8(HF:4.20%)和OSNAS3-H2(HF: 1.00%)。对于标题日期,GHD7-H8(HF:3.08%),TOB1-H10(HF:4.60%)早期开花,GHD7-H14(HF:42.60%),TRX1-H9(HF:27.97%),OSVIL3-H14( HF:1.72%)用于中等持续时间开花,而GHD7-H6(HF:1.65%),SNB-H9(HF:9.35%)是晚开花。 GS5-H4(HF:65.84%)归属细长,GS5-H5(HF:29.00%),GW2-H2(HF:4.13%)是粗晶的中细长和GS5-H9(HF:2.15%)。此外,单倍型分析解释了所选巨型品种优越性的可能遗传基础。总体而言,该研究表明,通过基于单倍型育种的育种育种,旨在通过旨在使未来食物和营养需求的优质单倍型组合开发下一代量身定制的水稻。

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