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Accelerating the Switchgrass (Panicum virgatum L.) Breeding Cycle Using Genomic Selection Approaches

机译:使用基因组选择方法加快柳枝((Panicum virgatum L.)育种周期

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摘要

Switchgrass (Panicum virgatum L.) is a perennial grass undergoing development as a biofuel feedstock. One of the most important factors hindering breeding efforts in this species is the need for accurate measurement of biomass yield on a per-hectare basis. Genomic selection on simple-to-measure traits that approximate biomass yield has the potential to significantly speed up the breeding cycle. Recent advances in switchgrass genomic and phenotypic resources are now making it possible to evaluate the potential of genomic selection of such traits. We leveraged these resources to study the ability of three widely-used genomic selection models to predict phenotypic values of morphological and biomass quality traits in an association panel consisting of predominantly northern adapted upland germplasm. High prediction accuracies were obtained for most of the traits, with standability having the highest ten-fold cross validation prediction accuracy (0.52). Moreover, the morphological traits generally had higher prediction accuracies than the biomass quality traits. Nevertheless, our results suggest that the quality of current genomic and phenotypic resources available for switchgrass is sufficiently high for genomic selection to significantly impact breeding efforts for biomass yield.
机译:柳枝((Panicum virgatum L.)是一种多年生草,正在作为生物燃料的原料进行开发。阻碍该物种育种努力的最重要因素之一是需要精确测量每公顷生物量的产量。在近似于生物量产量的易于测量的性状上进行基因组选择,有可能显着加快繁殖周期。柳枝ge基因组和表型资源的最新进展现在使得评估此类特征的基因组选择潜力成为可能。我们利用这些资源来研究三种广泛使用的基因组选择模型在主要由北部适应性旱地种质组成的关联小组中预测形态和生物量质量性状的表型值的能力。对于大多数性状,都获得了较高的预测准确性,而可站立性具有最高的十倍交叉验证预测准确性(0.52)。此外,形态特征通常比生物质特征具有更高的预测准确性。然而,我们的结果表明,目前柳枝current的基因组和表型资源的质量对于基因组选择而言足够高,从而显着影响了生物量产量的育种工作。

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