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'金湘玉'黄桃果实糖与类黄酮代谢及转录组测序分析

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采用高效液相色谱法、RNA-seq转录组测序等方法研究了'金湘玉'黄桃(Prunus persica'Jinxiangyu')果实不同发育时期(花后 20~90 d)可溶性糖组分及类黄酮物质的含量变化,筛选出调控果实可溶性糖与类黄酮化合物形成的关键基因。结果表明:花后60~85 d为'金湘玉'果实品质形成的关键阶段,果实中可溶性糖、可溶性固形物、果糖、蔗糖含量在此期间明显上升;成熟果实糖含量以果糖和蔗糖为主;山奈素苷在果实中的含量较低,槲皮素苷含量在幼果期含量较高,随果实成熟含量降低;在果实中不含有花色苷化合物;参与类黄酮代谢相关基因(ANS、DFR、F3H、FLS、4CL1 等)在果肉中的表达量较低;在果实发育过程中共鉴定到 181个差异表达基因参与 5 条糖代谢途径,其中SDH基因表达水平较高且随着果实成熟而持续上调,主要促进果实发育后期果糖含量的积累;SPS1、SS与SS1 基因表达水平随着果实成熟而持续上调,对蔗糖调控起着关键作用;SUS3、INVA基因在果实发育前期表达水平较高,主要促进蔗糖的降解。
Transcriptome Sequencing for Sugar and Flavonoid Metabolism in Prunus persica'Jinxiangyu'
In this study,high performance liquid chromatography(HPLC)and RNA-seq transcriptome sequencing were used to study the changes in soluble sugar components and flavonoids in Prunus persica'Jinxiangyu'at different developmental stages(20-90 d after flowering)and screen the key genes regulating the formation of soluble sugar and flavonoids in the fruits.The results showed that 60-85 d after flowering was the key stage of quality formation of Prunus persica'Jinxiangyu',and the content of soluble sugar,soluble solid,fructose,and sucrose in the fruit increased significantly during this period.The sugar content of ripe fruits was mainly fructose and sucrose.The content of kaempferol glycoside was low in the fruit.Quercetin glycoside content was higher in the young fruit stage and decreased with fruit maturity.There were no anthocyanin compounds in the fruit.The expression levels of genes involved in flavonoid metabolism(ANS,DFR,F3H,FLS,4CL1,etc.)were low in the fruit.A total of 181 differentially expressed genes were identified during fruit development to participate in five sugar metabolism pathways,among which the SDH gene had a higher expression level,which continuously rised in the later stage of fruit development.It mainly promoted the accumulation of fructose content in the later stage of fruit development.The expression levels of SPS1,SS,and SS1 genes were continuously up-regulated,which played a key role in sucrose regulation.The higher expression levels of SUS3 and INVA genes in the early stage of fruit development promoted the degradation of sucrose.

Yellow peachSugar metabolismFlavonoid compoundsDifferential gene expression

陈为峰、王春发、黄佳、李杜、张良波

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湖南省园艺研究所,湖南 长沙 410125

衡南鸿祥种养专业合作社,湖南 衡阳 421125

衡阳市农业科学院,湖南 衡阳 421100

黄桃 糖代谢 类黄酮化合物 差异基因表达

2024

农业科学与技术(英文版)
湖南省农业科学院

农业科学与技术(英文版)

影响因子:0.222
ISSN:1009-4229
年,卷(期):2024.25(2)