生物
遗传力
基因组选择
选择(遗传算法)
植物育种
遗传增益
动物育种
特质
林木育种
人口
基因组学
单胃
生物技术
反刍动物
进化生物学
遗传学
遗传变异
作物
基因组
农学
生态学
基因型
基因
计算机科学
木本植物
人口学
社会学
单核苷酸多态性
程序设计语言
人工智能
作者
Zibei Lin,Ben J. Hayes,Hans D. Daetwyler
摘要
Genomic selection is now being used at an accelerating pace in many plant species. This review first discusses the factors affecting the accuracy of genomic selection, and then interprets results of existing plant genomic selection studies in light of these factors. Differences between genomic breeding strategies for self-pollinated and open-pollinated species, and between-population level v. within-family design, are highlighted. As expected, more training individuals, higher trait heritability and higher marker density generally lead to better accuracy of genomic breeding values in both self-pollinated and open-pollinated plants. Most published studies to date have artificially limited effective population size by using designs of bi-parental or within-family structure to increase accuracies. The capacity of genomic selection to reduce generation intervals by accurately evaluating traits at an early age makes it an effective tool to deliver more genetic gain from plant breeding in many cases.
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