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首页> 外文期刊>Molecular Breeding >Epistatic fire blight resistance QTL alleles in the apple cultivar 'Enterprise' and selection X-6398 discovered and characterized through pedigree-informed analysis
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Epistatic fire blight resistance QTL alleles in the apple cultivar 'Enterprise' and selection X-6398 discovered and characterized through pedigree-informed analysis

机译:苹果品种“企业”和选择X-6398发现和特征通过血统知情分析

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摘要

Most cultivated apple cultivars are highly susceptible to fire blight, caused by Erwinia amylovora. However, differences in resistance levels are observed among cultivars and could be used in breeding. In this paper, we investigated the genetic basis of fire blight resistance of the cultivar 'Enterprise' and the advanced breeding selection X-6398. Genotyped pedigrees were used for validating and curating historic pedigree records. Various quantitative trait locus (QTL) discovery approaches were applied on the full-sib families 'Gala' x 'Enterprise' (GaEn) and X-6398 x X-6683 (TW) with the software FlexQTL (TM) and MapQTL (R). The paternal lineage of 'Enterprise' was reconstructed and showed to include 'Cox'sOrange Pippin'. The QTLs found varied with the software used. Using FlexQTL T, two were found on linkage groups (LGs) 7 and 13, favourable alleles inherited by Enterprise from 'Cox's Orange Pippin' and 'Golden Delicious', respectively. The former was identical to the previously named FB_F7 allele from 'Fiesta', while the latter is new and has been named FB_13GD. X-6398 had a QTL at the same position as FB_F7. Its favourable allele was new, originating from the unknown grandfather of X-4598, and was named FB_7X6398. Using MapQTL (R) on GaEn, FB_F7 was also identified. Performing the same analysis on the subset of offspring that carried the favourable allele of FB_F7, two putative QTLs on LG8 and on top of LG13 were identified, which showed interactions with FB_F7. Implication of the findings for breeding for fire blight-resistant apples is discussed. Single nucleotide polymorphism data on Enterprise and its ancestors are provided.
机译:大多数栽培的苹果品种非常容易发生火灾,由埃尔维亚·阿米瓦洛拉引起。然而,在品种之间观察到抵抗水平的差异,并且可以用于繁殖。在本文中,我们调查了品种“企业”和晚期育种选择X-6398的火灾抗性的遗传基础。基因分型的章节用于验证和策划历史血统记录。使用软件FlexQTL(TM)和MAPQTL(R),应用各种定量特性轨迹(QTL)发现方法。 。 “企业”的父系血统谱系被重建并显示为“Cox'Sorange Pippin”。发现的QTL可以随着所用的软件而变化。使用FLEXQTL T,两种在联动组(LGS)7和13,由“COX橙皮”和“金色美味”分别继承的有利等位基因。前者与来自'fiesta'的先前命名的fb_f7等位基因相同,而后者是新的,并被命名为fb_13gd。 X-6398具有与FB_F7相同位置的QTL。它有利的等位基因是新的,源自X-4598的未知爷爷,并被命名为FB_7X6398。使用MapQTL(R)在GaEN上,还识别了FB_F7。对携带FB_F7的有利等位基因的后代的对后代子集进行相同的分析,鉴定了LG8上的两个推定QTL和LG13顶部的推定QTL,其显示与FB_F7的相互作用。讨论了对抗火糊涂苹果育种的调查结果的含义。提供了关于企业及其祖先的单核苷酸多态性数据。

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