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基因组选择在欧洲玉米精英育种群体中的准确性。

Accuracy of genomic selection in European maize elite breeding populations.

机构信息

State Plant Breeding Institute, University of Hohenheim, 70599, Stuttgart, Germany.

出版信息

Theor Appl Genet. 2012 Mar;124(4):769-76. doi: 10.1007/s00122-011-1745-y. Epub 2011 Nov 11.

Abstract

Genomic selection is a promising breeding strategy for rapid improvement of complex traits. The objective of our study was to investigate the prediction accuracy of genomic breeding values through cross validation. The study was based on experimental data of six segregating populations from a half-diallel mating design with 788 testcross progenies from an elite maize breeding program. The plants were intensively phenotyped in multi-location field trials and fingerprinted with 960 SNP markers. We used random regression best linear unbiased prediction in combination with fivefold cross validation. The prediction accuracy across populations was higher for grain moisture (0.90) than for grain yield (0.58). The accuracy of genomic selection realized for grain yield corresponds to the precision of phenotyping at unreplicated field trials in 3-4 locations. As for maize up to three generations are feasible per year, selection gain per unit time is high and, consequently, genomic selection holds great promise for maize breeding programs.

摘要

基因组选择是一种很有前途的育种策略,可以快速改良复杂性状。本研究的目的是通过交叉验证来研究基因组育种值的预测准确性。该研究基于来自一个半双列交配设计的 6 个分离群体的实验数据,该设计有 788 个来自一个优秀玉米育种计划的测验交后代。这些植物在多个地点的田间试验中进行了密集的表型分析,并使用 960 个 SNP 标记进行了指纹分析。我们使用随机回归最佳线性无偏预测结合五重交叉验证。在群体之间,籽粒水分的预测准确性(0.90)高于籽粒产量(0.58)。实现的基因组选择对籽粒产量的准确性相当于在 3-4 个地点的未复制田间试验中的表型精度。对于玉米来说,每年可以进行三代,因此单位时间的选择增益较高,因此基因组选择对玉米育种计划具有很大的前景。

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