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Endopolygalacturonase Gene Polymorphisms: Asset of the Locus in Different Peach Accessions

机译:内聚半乳糖醛酸酶基因多态性:在不同桃子种质的所在地资产。

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Endopolygalacturonase (endoPG) plays a pivotal role in determining peach [Prunus persica L. (Batsch)] fruit characteristics. Different Pp-endoPG genes or allelic variants have been described, characterized by different polymorphisms: insertions-deletions (InDels) and single nucleotide polymorphisms (SNPs). Eighty-five peach accessions (comprising commercial cultivars, F1 progenies of selected crosses, and three haploid seedlings) with different flesh softening patterns (Non Melting: NM; Melting: M; Slow Softening: SS; Stony Hard: SH) were screened by exploiting specific polymorphisms, with the aim to characterize their asset at the endoPG locus and evaluate a potential relationship with fruit flesh texture phenotype. The results of InDel analysis allowed to distinguish, by a simple genotyping procedure, NM flesh phenotypes from the others. Further information arose from this analysis, showing that two Pp-endoPG genes, i.e., Pp-endoPGm (Ppa006839m), involved in the determination of the Melting/Non Melting trait, and Pp-endoPG_M (Ppa006857m), involved in the determination of the Clingstone/Freestone trait, always co-segregate, and that SS Big Top possesses a “null” Pp-endoPG allele. Cleaved Amplified Polymorphic Sequence (CAPS) analysis allowed to preliminarily discriminate the Pp-endoPG variants of the SS and SH accessions considered. The integrated use of the considered polymorphisms in a high number of peach accessions proved useful, by individuating the different gene variants and their combinations, to describe the structure of the endoPG locus in different genotypes.
机译:内聚半乳糖醛酸内切酶(endoPG)在确定桃[Prunus persica L.(Batsch)]果实特性中起关键作用。已经描述了不同的Pp-endoPG基因或等位基因变体,其特征在于不同的多态性:插入缺失(InDels)和单核苷酸多态性(SNP)。通过开发筛选了具有不同果肉软化模式(非熔解:NM;熔解:M;慢软化:SS;石坚硬:SH)的八十五种桃子(包括商品品种,部分杂交的F1子代和三只单倍体幼苗)。特定多态性,目的是在endoPG基因座处表征其资产并评估与果肉质地表型的潜在关系。 InDel分析的结果允许通过简单的基因分型程序将NM肉表型与其他表型区分开。从该分析中得出了进一步的信息,表明两个Pp-endoPG基因,即Pp-endoPGm(Ppa006839m),参与了融化/非融化性状的确定,以及Pp-endoPG_M(Ppa006857m),与基因的融化/非融化性的确定有关。 Clingstone / Freestone性状始终共同分离,并且SS Big Top具有“无效”的Pp-endoPG等位基因。裂解扩增多态序列(CAPS)分析可以初步区分所考虑的SS和SH品种的Pp-endoPG变体。通过区分不同的基因变异及其组合来描述不同基因型的endoPG基因座的结构,在许多桃子品种中综合考虑使用的多态性被证明是有用的。

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