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Phenotypic Parent Selection Within a Khorasan Wheat Collection and Genetic Variation in Advanced Breeding Lines Derived by Hybridization With Durum Wheat

机译:在Khorasan小麦收集中的表型母体选择和通过杂交与硬质小麦杂交的先进育种线的遗传变异

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摘要

Tetraploid relatives of durum wheat (Triticum turgidum L. subsp. durum (Desf.) Husnot) represent an important reservoir of economically useful genes for development of new wheat cultivars. Two field experiments were conducted at Foggia (Italy), in the 2004 to 2006 and 2012 to 2015 growing seasons. In the first, 77 Khorasan wheat [T. turgidum subsp. turanicum (Jakubz.) Á. Löve & D. Löve] accessions from 23 countries of four geographic regions (Africa, Asia, Europe, and others) were evaluated to explore breeding opportunities. Seven agronomic traits were used to describe the diversity among the accessions: days to heading (HT), plant height (PH), grain yield (GY), specific weight (SW) as an indication of the density of the grain, 1000-grain weight (TGW), protein content, and gluten content. The total Shannon–Weaver diversity index was used to estimate phenotypic diversity, which ranged from monomorphic for PC (0.39) to highly polymorphic for TGW (0.67). A high level of total variation (87%) was attributed to the within-region diversity. The accessions grouped into six clusters, and seven elite accessions were selected as parents for crosses with durum wheat. In the second experiment, ten parents (seven Khorasan accessions and three durum wheat cultivars) and 790 F6 recombinant inbred lines (RILs) from the different T. durum × T. turgidum subsp. turanicum crosses were included to study genotypic and phenotypic variability of the same agronomic traits, plus the susceptibility index (SI) for disease. The genotypic coefficients of variation were lower than the phenotypic ones for all of the traits, which showed an environment effect on expression of these traits. High broad-sense heritability (h2b > 86%) was recorded for all traits, and high h2b coupled with high genetic gain as percentage of the mean (ΔG) was observed for HT, PH, GY, and SW, and for SI. This suggests that selection for these traits will provide good responses. Four principal components explained 70% of the total variation, and the genotypes were clustered into 20 groups. According to the results, some lines could be tested in varietal registration trials, and/or could be used as a significant breeding pool for durum wheat cultivar development in Mediterranean area.
机译:硬粒小麦的四倍体亲属(圆锥小麦L.亚种硬粒小麦(Desf。)Husnot)代表的经济有用的基因的重要水库的新的小麦品种的开发。两个现场实验在福贾(意大利)进行的,在2004〜2006年和2012年至2015年的生长季节。在第一,77呼罗珊小麦[T.圆锥小麦亚种。 turanicum(Jakubz)。A。 LOVE&D.爱]从四个地理区域(非洲,亚洲,欧洲,和其他人)的23个国家种质进行了评价探索繁殖的机会。七个农艺性状被用来描述种质之间的多样性:天标题(HT),植物高度(PH),谷粒产量(GY),比重(SW),作为颗粒的密度的指示,千粒重重量(TGW),蛋白质含量,和面筋含量。总香农 - 韦弗多样性指数被用来估计表型多样性,从单态的范围为PC(0.39)到高度多态性为TGW(0.67)。总变化(87%)的高水平的归因于内区域的多样性。分为六组,七个精英种质种质被选定为亲本与硬粒小麦杂交。在第二个实验中,10父母(7个呼罗珊种质和三个硬粒小麦栽培品种),并从不同的硬粒小麦×T.圆锥小麦亚种790个F6重组近交系(RIL)。被列入turanicum杂交研究同样农艺性状的基因型和表型变异,加上疾病的易感性指数(SI)。变异的基因型系数比的表型的人的所有特征,这表明在这些性状的表达的环境影响低。高广义遗传(H2B> 86%)被记录为所有特征,并观察到HT,PH,GY,和SW,以及用于SI加上高遗传增益为平均值(ΔG)的百分比高H2B。这表明,选择这些性状将提供良好的反应。 4种主成分说明70%的总的变化,和基因型聚为20组。根据研究结果,一些线路可能在品种注册临床试验进行测试,和/或可作为一个显著养殖池在地中海地区硬粒小麦品种的开发。

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