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首页> 外文期刊>BMC Plant Biology >Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach
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Fine mapping and identification of a candidate gene for a major locus controlling maturity date in peach

机译:桃成熟期主要基因座的候选基因的精细定位和鉴定

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Background Maturity date (MD) is a crucial factor for marketing of fresh fruit, especially those with limited shelf-life such as peach (Prunus persica L. Batsch): selection of several cultivars with differing MD would be advantageous to cover and extend the marketing season. Aims of this work were the fine mapping and identification of candidate genes for the major maturity date locus previously identified on peach linkage group 4. To improve genetic resolution of the target locus two F2 populations derived from the crosses Contender x Ambra (CxA, 306 individuals) and PI91459 (NJ Weeping) x Bounty (WxBy, 103 individuals) were genotyped with the Sequenom and 9K Illumina Peach Chip SNP platforms, respectively. Results Recombinant individuals from the WxBy F2 population allowed the localisation of maturity date locus to a 220 kb region of the peach genome. Among the 25 annotated genes within this interval, functional classification identified ppa007577m and ppa008301m as the most likely candidates, both encoding transcription factors of the NAC ( N AM/ A TAF1, 2/ C UC2) family. Re-sequencing of the four parents and comparison with the reference genome sequence uncovered a deletion of 232 bp in the upstream region of ppa007577m that is homozygous in NJ Weeping and heterozygous in Ambra, Bounty and the WxBy F1 parent. However, this variation did not segregate in the CxA F2 population being the CxA F1 parent homozygous for the reference allele. The second gene was thus examined as a candidate for maturity date. Re-sequencing of ppa008301m, showed an in-frame insertion of 9 bp in the last exon that co-segregated with the maturity date locus in both CxA and WxBy F2 populations. Conclusions Using two different segregating populations, the map position of the maturity date locus was refined from 3.56 Mb to 220 kb. A sequence variant in the NAC gene ppa008301m was shown to co-segregate with the maturity date locus, suggesting this gene as a candidate controlling ripening time in peach. If confirmed on other genetic materials, this variant may be used for marker-assisted breeding of new cultivars with differing maturity date.
机译:背景成熟日期(MD)是销售新鲜水果(尤其是那些保质期有限的水果,例如桃(Prunus persica L. Batsch))的关键因素:选择几种具有不同MD的品种将有利于覆盖和扩展销售季节。这项工作的目的是对先前在桃子连锁群4上确定的主要成熟日期基因座的候选基因进行精细定位和鉴定。为提高目标基因座的遗传分辨率,从杂交获得两个F 2 种群使用Sequenom和9K Illumina Peach Chip SNP平台分别对Contender x Ambra(CxA,306个人)和PI91459(NJ Weeping)x Bounty(WxBy,103个人)进行基因分型。结果来自WxBy F 2 种群的重组个体将成熟日期基因座定位于桃基因组的220 kb区域。在此间隔内的25个带注释的基因中,功能分类确定ppa007577m和ppa008301m是最可能的候选基因,均编码NAC(NAM / A TAF1、2 / C UC2)家族的转录因子。对四个亲本进行重新测序并与参考基因组序列进行比较,发现ppa007577m上游区域缺失232 bp,该区域在NJ哭泣中是纯合子,在Ambra,Bounty和WxBy F 1 中是杂合子父母然而,这种变异并未在作为参考等位基因纯合子的CxA F 1 亲本的CxA F 2 群体中分离。因此,第二个基因被检查为成熟日期的候选者。 ppa008301m的重新测序显示,在最后一个外显子中有9 bp的符合读框的插入,与CxA和WxBy F 2 群体的成熟日期基因座共同分离。结论使用两个不同的隔离种群,将成熟日期基因座的图谱位置从3.56 Mb精炼为220 kb。 NAC基因ppa008301m中的序列变体与成熟日期基因座共分离,表明该基因是控制桃子成熟时间的候选基因。如果在其他遗传材料上得到证实,则该变体可用于成熟日期不同的新品种的标记辅助育种。

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