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Breeding Value of Primary Synthetic Wheat Genotypes for Grain Yield

机译:基因型小麦初等育种的育种价值。

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摘要

To introduce new genetic diversity into the bread wheat gene pool from its progenitor, Aegilops tauschii (Coss.) Schmalh, 33 primary synthetic hexaploid wheat genotypes (SYN) were crossed to 20 spring bread wheat (BW) cultivars at the International Wheat and Maize Improvement Center. Modified single seed descent was used to develop 97 populations with 50 individuals per population using first back-cross, biparental, and three-way crosses. Individuals from each cross were selected for short stature, early heading, flowering and maturity, minimal lodging, and free threshing. Yield trials were conducted under irrigated, drought, and heat-stress conditions from 2011 to 2014 in Ciudad Obregon, Mexico. Genomic estimated breeding values (GEBVs) of parents and synthetic derived lines (SDLs) were estimated using a genomic best linear unbiased prediction (GBLUP) model with markers in each trial. In each environment, there were SDLs that had higher GEBVs than their recurrent BW parent for yield. The GEBVs of BW parents for yield ranged from -0.32 in heat to 1.40 in irrigated trials. The range of the SYN parent GEBVs for yield was from -2.69 in the irrigated to 0.26 in the heat trials and were mostly negative across environments. The contribution of the SYN parents to improved grain yield of the SDLs was highest under heat stress, with an average GEBV for the top 10% of the SDLs of 0.55 while the weighted average GEBV of their corresponding recurrent BW parents was 0.26. Using the pedigree-based model, the accuracy of genomic prediction for yield was 0.42, 0.43, and 0.49 in the drought, heat and irrigated trials, respectively, while for the marker-based model these values were 0.43, 0.44, and 0.55. The SYN parents introduced novel diversity into the wheat gene pool. Higher GEBVs of progenies were due to introgression and retention of some positive alleles from SYN parents.
机译:为了从其祖先埃及小麦(Aegilops tauschii(Coss。)Schmalh)向面包小麦基因库中引入新的遗传多样性,将33种主要的合成六倍体小麦基因型(SYN)与国际小麦和玉米改良的20个春季面包小麦(BW)品种进行了杂交中央。改良的单种子后代用于通过第一次回交,双亲和三向杂交发展出97个种群,每种群50个个体。选择每个杂交个体的身材矮小,抽穗早,开花和成熟,倒伏最少和自由脱粒。从2011年至2014年,在墨西哥城的俄勒冈州的灌溉,干旱和高温胁迫条件下进行了产量试验。父母和合成衍生系(SDL)的基因组估计育种值(GEBV)在每个试验中使用带有标记的基因组最佳线性无偏预测(GBLUP)模型进行估计。在每种环境中,有一些SDL的GEBV高于其循环BW亲本的产量。在灌溉试验中,BW亲本的GEBV在加热时的范围从-0.32到1.40。 SYN亲本GEBV的产量范围从灌溉时的-2.69到热试验中的0.26,在整个环境中大多为负。在热胁迫下,SYN亲本对提高SDL籽粒产量的贡献最高,SDL的前10%的平均GEBV为0.55,而其相应的经常性体重亲本的加权平均GEBV为0.26。使用基于系谱的模型,在干旱,高温和灌溉试验中,基因组预测产量的准确性分别为0.42、0.43和0.49,而对于基于标记的模型,这些值分别为0.43、0.44和0.55。 SYN父母将新的多样性引入了小麦基因库。后代较高的GEBV是由于SYN亲本的一些阳性等位基因的渗入和保留所致。

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