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QTL Analysis and Candidate Gene Mapping for the Polyphenol Content in Cider Apple

机译:苹果酒中多酚含量的QTL分析和候选基因定位

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摘要

Polyphenols have favorable antioxidant potential on human health suggesting that their high content is responsible for the beneficial effects of apple consumption. They control the quality of ciders as they predominantly account for astringency, bitterness, color and aroma. In this study, we identified QTLs controlling phenolic compound concentrations and the average polymerization degree of flavanols in a cider apple progeny. Thirty-two compounds belonging to five groups of phenolic compounds were identified and quantified by reversed phase liquid chromatography on both fruit extract and juice, over three years. The average polymerization degree of flavanols was estimated in fruit by phloroglucinolysis coupled to HPLC. Parental maps were built using SSR and SNP markers and used for the QTL analysis. Sixty-nine and 72 QTLs were detected on 14 and 11 linkage groups of the female and male maps, respectively. A majority of the QTLs identified in this study are specific to this population, while others are consistent with previous studies. This study presents for the first time in apple, QTLs for the mean polymerization degree of procyanidins, for which the mechanisms involved remains unknown to this day. Identification of candidate genes underlying major QTLs was then performed in silico and permitted the identification of 18 enzymes of the polyphenol pathway and six transcription factors involved in the apple anthocyanin regulation. New markers were designed from sequences of the most interesting candidate genes in order to confirm their co-localization with underlying QTLs by genetic mapping. Finally, the potential use of these QTLs in breeding programs is discussed.
机译:多酚对人体健康具有有利的抗氧化潜能,表明多酚的含量对苹果食用有益。他们控制着苹果酒的质量,因为它们主要解决了涩味,苦味,颜色和香气。在这项研究中,我们确定了控制苹果酒后代中酚类化合物浓度和黄烷醇平均聚合度的QTL。在三年内,通过反相液相色谱对水果提取物和果汁进行了鉴定,并对属于五类酚类化合物的32种化合物进行了鉴定和定量。水果黄酮的平均聚合度是通过光解与HPLC联用估算的。使用SSR和SNP标记构建父母亲图谱,并将其用于QTL分析。在雌性和雄性图的14个和11个连锁组上分别检测到69个和72个QTL。在这项研究中确定的大多数QTL是特定于该人群的,而其他QTL与以前的研究一致。这项研究首次在苹果中提出了原花青素平均聚合度的QTL,其涉及的机制至今仍未知。然后通过计算机进行主要QTL潜在候选基因的鉴定,并允许鉴定多酚途径的18种酶和参与苹果花色苷调节的6种转录因子。从最有趣的候选基因序列中设计了新的标记,以便通过遗传作图确认其与潜在QTL的共定位。最后,讨论了这些QTL在育种计划中的潜在用途。

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