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White Clover Seed Yield: A Case Study in Marker-Assisted Selection

机译:白色三叶草种子产量:标记辅助选择中的案例研究

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Genetic gain from phenotypic selection in open-pollinated forage species is constrained by the inability to accurately use phenotype to estimate genotype, prior to parent selection for polycrossing. The use of marker-assisted selection (MAS) offers the potential to accelerate genetic gain by partially overcoming this constraint. White clover (Trifolium repens L., 2n = 4x = 32) is an open-pollinated, high-quality, perennial forage legume with complex inheritance of traits underpinning pasture persistence, seed production, animal productivity, and animal health. Our legume improvement programme has utilised seed production in white clover as a case study in the application of MAS in outbred forage species, using microsatellite markers linked to quantitative trait loci (QTL) of moderate resolution. The QTL SY03-D2 on the distal end of group D2, was used to explore marker:trait associations in 12 breeding pools, leading to opportunities to conduct reselection experiments, and to monitor response to genotypic selection criteria in experimental polycrosses. Each breeding pool was sampled with 90 or more individuals grown out in an unreplicated field trial to assess seed yield traits, as per standard practice in our cultivar development programme. DNA samples were tested with up to three microsatellite markers associated with the QTL. Significant (p<0.01) marker:trait associations were observed in 8 of the 12 breeding pools, with the most informative polymorphisms accounting for differences of 30-69% in the mean seed yield values within breeding pools. These data suggest that value can be realised from the current investment in genomics for MAS in white clover, given QTL of moderate resolution, and widely used marker platforms such as microsatellites.
机译:在开放授粉牧草种类中的表型选择的遗传增益受到无法准确使用表型来估计基因型的限制,在亲本复方进行多折。使用标记辅助选择(MAS)提供了通过部分克服这种约束来加速遗传增益的可能性。白三叶草(三梨渣L.,2n = 4x = 32)是一种开放式授粉,高质量的多年生牧草,具有复杂的特征,其特征缺乏牧场持久性,种子生产,动物生产力和动物健康。我们的豆科改善计划利用了白三叶草中的种子生产作为伴随着脱离饲料种类的案例研究,使用与中等分辨率的定量特性基因座(QTL)相关的微卫星标记。 D2的远端上的QTL SY03-D2,用于探索标记:12种育种池中的特质关联,从而导致进行重选实验的机会,并监测实验性多边形的基因型选择标准的响应。每种繁殖池在一项不复杂的现场试验中含有90个或更多个体,以评估种子产量的特征,根据我们的品种发展计划的标准做法。用最多3个与QTL相关的三种微卫星标记测试DNA样品。重要(P <0.01)标记:在12种育种池中的8个中观察到特征联合,最佳的多态性占育种池中平均种子产量值的30-69%的差异。这些数据表明,在白色三叶草中的MAS基因组学的基因组学中的当前投资中可以实现价值,给定适度分辨率的QTL,并广泛使用微卫星等标记平台。

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