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Inheritance studies of apple scab resistance and identification of Rvi14, a new major gene that acts together with other broad-spectrum QTL

机译:苹果赤霉病抗性的遗传研究和Rvi14的鉴定,Rvi14是与其他广谱QTL共同作用的新主要基因

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摘要

Scab, caused by the fungal pathogen Venturia inaequalis, is the most common disease of cultivated apple (Malus domestica). The fungal races 6 and 7 have now overcome the major resistance gene Vf, which is widely used in apple breeding programmes. New breeding strategies to achieve durable resistance are thus necessary. The aim of this study was to determine the genetic basis of quantitative resistance of the apple cultivar ‘Du¨lmener Rosenapfel’, known to be scab resistant under different environmental conditions. An F1 progeny derived from the cross between the susceptible cultivar ‘Gala’ and ‘Du¨lmener Rosenapfel’ was tested in a greenhouse with a multi-isolate inoculum of V. inaequalis.Rvi14, a new major gene that conditions a chlorotic-type reaction, was mapped on linkage group (LG) 6 in a genomic region not known to be involved in disease resistance. A further three quantitative trait loci (QTL) for resistance were identified. One co-localized with Rvi14 on LG6, whereas the remaining two were detected on LG11 and LG17, in genomic regions already reported to carry broad-spectrum QTL in other genetic backgrounds. Since a selective genotyping approach was used to detect QTL, an expectation-maximization (EM) computation was used to estimate the corrected QTL contributionsto phenotypic variation and was validated by entire progeny genotyping.
机译:霉菌病是由真菌病原体不相等的Venturia inequequalis引起的,是最常见的栽培苹果病(Malus domestica)。真菌6和7现在克服了主要的抗性基因Vf,该基因已在苹果育种计划中广泛使用。因此,需要新的育种策略来实现持久的抗性。这项研究的目的是确定苹果品种“DuélmenerRosenapfel”的定量抗性的遗传基础,该品种在不同环境条件下均具有抗结ab性。在温室中,对不育种V. inaequalis.Rvi14进行多重分离接种,测试了易感品种“ Gala”和“ Du?lmener Rosenapfel”之间杂交产生的F1后代。 ,被映射在未知与疾病抗性有关的基因组区域中的连锁群(LG)6上。确定了另外三个抗性的数量性状基因座(QTL)。一个已经与Rvi14共同定位在LG6上,而其余两个在LG11和LG17上被检测到,在已经报道在其他遗传背景中携带广谱QTL的基因组区域中。由于使用选择性基因分型方法来检测QTL,因此使用期望最大化(EM)计算来估计校正的QTL对表型变异的贡献,并通过整个子代基因型进行验证。

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