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Using the UK reference population Avalon × Cadenza as a platform to compare breeding strategies in elite Western European bread wheat

机译:以英国参考人口Avalon×Cadenza为平台比较西欧精制面包小麦的育种策略

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摘要

Wheat breeders select for qualitative and quantitative traits, the latter often detected as quantitative trait loci (QTL). It is, however, a long procedure from QTL discovery to the successful introduction of favourable alleles into new elite varieties and finally into farmers’ crops. As a proof of principle for this process, QTL for grain yield (GY), yield components, plant height (PH), ear emergence (EM), solid stem (SS) and yellow rust resistance (Yr) were identified in segregating UK bread wheat reference population, Avalon × Cadenza. Among the 163 detected QTL were several not reported before: 17 for GY, the major GY QTL on 2D; a major SS QTL on 3B; and Yr6 on 7B. Common QTL were identified on ten chromosomes, most interestingly, grain number (GN) was found to be associated with Rht-D1b; and GY and GN with a potential new allele of Rht8. The interaction of other QTL with GY and yield components was discussed in the context of designing a UK breeding target genotype. Desirable characteristics would be: similar PH and EM to Avalon; Rht-D1b and Vrn-A1b alleles; high TGW and GN; long and wide grains; a large root system, resistance to diseases; and maximum GY. The potential of the identified QTL maximising transgressive segregation to produce a high-yielding and resilient genotype was demonstrated by simulation. Moreover, simulating breeding strategies with F2 enrichment revealed that the F2–DH procedure was superior to the RIL and the modified SSD procedure to achieve that genotype. The proposed strategies of parent selection and breeding methodology can be used as guidance for marker-assisted wheat breeding.Electronic supplementary materialThe online version of this article (doi:10.1007/s11032-015-0268-7) contains supplementary material, which is available to authorized users.
机译:小麦育种者选择定性和定量性状,后者通常被检测为定量性状基因座(QTL)。但是,从发现QTL到成功将有利的等位基因成功引入新的优良品种,并最终引入农作物,这是一个漫长的过程。作为此过程原理的证明,在分离英国面包时,确定了谷物产量(GY),产量成分,株高(PH),耳朵出苗(EM),实心茎(SS)和耐黄锈性(Yr)的QTL。小麦参考种群,Avalon×Cadenza。在163个检测到的QTL中,有几个以前没有报告过:GY中有17个,这是2D上的主要GY QTL。 3B上的主要SS QTL;和7r上的Yr6。在10条染色体上鉴定出常见的QTL,最有趣的是,发现晶粒数(GN)与Rht-D1b相关。和GY和GN以及Rht8的潜在新等位基因。在设计英国育种目标基因型的背景下,讨论了其他QTL与GY和产量成分的相互作用。理想的特性将是:与Avalon相似的PH和EM; Rht-D1b和Vrn-A1b等位基因;高TGW和GN;长而宽的谷粒;根系大,抗病力强;和最大GY。通过模拟证明了所鉴定的QTL最大化过犯隔离产生高产和有弹性的基因型的潜力。此外,用F2富集模拟育种策略表明,F2-DH程序优于RIL和改良的SSD程序以实现该基因型。拟议的亲本选择和育种方法策略可作为标记辅助小麦育种的指导。电子补充材料本文的在线版本(doi:10.1007 / s11032-015-0268-7)包含补充材料,可用于授权用户。

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