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Genomic Selection Outperforms Marker Assisted Selection for Grain Yield and Physiological Traits in a Maize Doubled Haploid Population Across Water Treatments

机译:整个水处理中玉米双倍单倍体群体的基因组选择优于标记辅助选择的谷物产量和生理性状

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摘要

To increase genetic gain for tolerance to drought, we aimed to identify environmentally stable QTL in per se and testcross combination under well-watered (WW) and drought stressed (DS) conditions and evaluate the possible deployment of QTL using marker assisted and/or genomic selection (QTL/GS-MAS). A total of 169 doubled haploid lines derived from the cross between CML495 and LPSC7F64 and 190 testcrosses (tester CML494) were evaluated in a total of 11 treatment-by-population combinations under WW and DS conditions. In response to DS, grain yield (GY) and plant height (PHT) were reduced while time to anthesis and the anthesis silking interval (ASI) increased for both lines and hybrids. Forty-eight QTL were detected for a total of nine traits. The allele derived from CML495 generally increased trait values for anthesis, ASI, PHT, the normalized difference vegetative index (NDVI) and the green leaf area duration (GLAD; a composite trait of NDVI, PHT and senescence) while it reduced trait values for leaf rolling and senescence. The LOD scores for all detected QTL ranged from 2.0 to 7.2 explaining 4.4 to 19.4% of the observed phenotypic variance with R2 ranging from 0 (GY, DS, lines) to 37.3% (PHT, WW, lines). Prediction accuracy of the model used for genomic selection was generally higher than phenotypic variance explained by the sum of QTL for individual traits indicative of the polygenic control of traits evaluated here. We therefore propose to use QTL-MAS in forward breeding to enrich the allelic frequency for a few desired traits with strong additive QTL in early selection cycles while GS-MAS could be used in more mature breeding programs to additionally capture alleles with smaller additive effects.
机译:为了增加耐旱性的遗传增益,我们旨在鉴定在水分充足(WW)和干旱胁迫(DS)条件下本身和测试交叉组合中环境稳定的QTL,并使用标记辅助和/或基因组学评估QTL的可能部署选择(QTL / GS-MAS)。在WW和DS条件下,在总共11种按人口处理的组合中,评估了总共169条来自CML495和LPSC7F64之间的杂交的双倍单倍体系和190个测试杂交(测试器CML494)。响应DS,降低了花期(GY)和株高(PHT),同时达到了开花的时间,并且系和杂交种的开花期丝裂间隔(ASI)增加。共检测到48个QTL,共有9个性状。源自CML495的等位基因通常会增加花药,ASI,PHT,归一化差异植物营养指数(NDVI)和绿叶面积持续时间(GLAD; NDVI,PHT和衰老的复合性状)的性状值,同时会降低叶片的性状值滚动和衰老。所有检测到的QTL的LOD得分在2.0到7.2之间,解释了观察到的表型变异的4.4到19.4%,R 2 的范围从0(GY,DS,行)到37.3%(PHT,WW,行)。用于基因组选择的模型的预测准确性通常高于表型方差,表型方差由表示单个性状的QTL的总和解释,表示此处评估的性状的多基因控制。因此,我们建议在正向育种中使用QTL-MAS,以在早期选择周期中用强加性QTL丰富一些期望性状的等位基因频率,而GS-MAS可用于更成熟的育种计划中,以附加地捕获具有较小加性效应的等位基因。

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