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Incorporating Desirable Genetic Characteristics From an Inferior Into a Superior Population Using Genomic Selection

机译:使用基因组选择将理想的遗传特征从劣等纳入上等人群

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摘要

Resistance to specific diseases may be improved by crossing a recipient line with a donor line (a distantly related strain) that is characterized by the desirable trait. However, considerable losses in the total merit index are expected when crossing recipient and donor lines. Repeated backcrossing with the recipient line will improve total merit index, but usually at the expense of the newly introgressed disease resistance, especially if this is due to polygenic effects rather than to a known single major QTL. This study investigates the possibilities for a more detailed introgression program based on marker-trait associations using dense marker genotyping and genomic selection. Compared with classical selection, genomic selection increased genetic gain, with the largest effect on low heritability traits and on traits not recorded on selection candidates (due to within-family selection). Further, within a wide range of economic weights and initial differences in the total merit index between donor and recipient lines, genomic selection produced backcrossed lines that were similar or better than the purebred lines within three to five generations. When using classical selection in backcrossing schemes, the long-term genetic contribution of the donor line was low. Hence, such selection schemes would usually perform similarly to simple purebreeding selection schemes.
机译:对特定疾病的抗性可以通过使受体系与以所需性状为特征的供体系(远缘相关菌株)杂交来提高。然而,当穿越受者和供体系时,总优点指数将损失相当大。与受体品系重复回交将改善总优点指数,但通常以新近渗入的抗病性为代价,尤其是如果这是由于多基因效应而不是由于已知的单个主要QTL所致。这项研究调查了使用密集的标记基因分型和基因组选择,基于标记-性状关联的更详细的基因渗入程序的可能性。与经典选择相比,基因组选择增加了遗传增益,对低遗传力性状和未记录在选择候选物中的性状的影响最大(由于家庭内部选择)。此外,在广泛的经济权重和供体与受体系之间总优劣指数的初始差异范围内,基因组选择产生了三到五代内与纯种系相似或更好的回交系。当在回交方案中使用经典选择时,供体系的长期遗传贡献较低。因此,这种选择方案通常将类似于简单的纯种选择方案来执行。

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