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多变量基因组分析和最优贡献选择预测东非普通菜豆在烹饪时间、铁、锌和谷物产量方面有较高的遗传增益。

Multivariate genomic analysis and optimal contributions selection predicts high genetic gains in cooking time, iron, zinc, and grain yield in common beans in East Africa.

作者信息

Saradadevi Renu, Mukankusi Clare, Li Li, Amongi Winnyfred, Mbiu Julius Peter, Raatz Bodo, Ariza Daniel, Beebe Steve, Varshney Rajeev K, Huttner Eric, Kinghorn Brian, Banks Robert, Rubyogo Jean Claude, Siddique Kadambot H M, Cowling Wallace A

机构信息

The UWA Institute of Agriculture, The Univ. of Western Australia, Perth, Western Australia, 6009, Australia.

UWA School of Agriculture and Environment, The Univ. of Western Australia, Perth, Western Australia, 6009, Australia.

出版信息

Plant Genome. 2021 Nov;14(3):e20156. doi: 10.1002/tpg2.20156. Epub 2021 Oct 26.

Abstract

Common bean (Phaseolus vulgaris L.) is important in African diets for protein, iron (Fe), and zinc (Zn), but traditional cultivars have long cooking time (CKT), which increases the time, energy, and health costs of cooking. Genomic selection was used to predict genomic estimated breeding values (GEBV) for grain yield (GY), CKT, Fe, and Zn in an African bean panel of 358 genotypes in a two-stage analysis. In Stage 1, best linear unbiased estimates (BLUE) for each trait were obtained from 898 genotypes across 33 field trials in East Africa. In Stage 2, BLUE in a training population of 141 genotypes were used in a multivariate genomic analysis with genome-wide single nucleotide polymorphism data from the African bean panel. Moderate to high genomic heritability was found for GY (0.45 ± 0.10), CKT (0.50 ± 0.15), Fe (0.57 ± 0.12), and Zn (0.61 ± 0.13). There were significant favorable genetic correlations between Fe and Zn (0.91 ± 0.06), GY and Fe (0.66 ± 0.17), GY and Zn (0.44 ± 0.19), CKT and Fe (-0.57 ± 0.21), and CKT and Zn (-0.67 ± 0.20). Optimal contributions selection (OCS), based on economic index of weighted GEBV for each trait, was used to design crossing within four market groups relevant to East Africa. Progeny were predicted by OCS to increase in mean GY by 12.4%, decrease in mean CKT by 9.3%, and increase in mean Fe and Zn content by 6.9 and 4.6%, respectively, with low achieved coancestry of 0.032. Genomic selection with OCS will accelerate breeding of high-yielding, biofortified, and rapid cooking African common bean cultivars.

摘要

普通菜豆(Phaseolus vulgaris L.)在非洲饮食中对于提供蛋白质、铁(Fe)和锌(Zn)非常重要,但传统品种的烹饪时间长,这增加了烹饪所需的时间、能源和健康成本。在一项两阶段分析中,利用基因组选择对一个包含358个基因型的非洲菜豆群体的籽粒产量(GY)、烹饪时间(CKT)、铁和锌的基因组估计育种值(GEBV)进行预测。在第一阶段,从东非33个田间试验中的898个基因型获得了每个性状的最佳线性无偏估计值(BLUE)。在第二阶段,将141个基因型的训练群体中的BLUE与来自非洲菜豆群体的全基因组单核苷酸多态性数据进行多变量基因组分析。发现GY(0.45±0.10)、CKT(0.50±0.15)、Fe(0.57±0.12)和Zn(0.61±0.13)具有中等至高的基因组遗传力。铁和锌之间(0.91±0.06)、GY和铁之间(0.66±0.17)、GY和锌之间(0.44±0.19)、CKT和铁之间(-0.57±0.21)以及CKT和锌之间(-0.67±0.20)存在显著的正向遗传相关性。基于每个性状加权GEBV的经济指数的最优贡献选择(OCS)被用于设计与东非相关的四个市场群体内的杂交。通过OCS预测,后代的平均GY将增加12.4%,平均CKT将减少9.3%,平均铁和锌含量将分别增加6.9%和4.6%,且实现的低共祖系数为0.032。采用OCS的基因组选择将加速高产、生物强化和快速烹饪的非洲普通菜豆品种的育种。

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