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Chlorophyll carotenoid and vitamin C metabolism regulation in Actinidia chinensis Hongyang outer pericarp during fruit development

机译:猕猴桃红阳外果皮果实发育过程中的叶绿素类胡萝卜素和维生素C代谢调控

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摘要

Ascorbic acid (AsA), chlorophyll and carotenoid contents and their associated gene expression patterns were analysed in Actinidia chinensis ‘Hongyang’ outer pericarp. The results showed chlorophyll degradation during fruit development and softening, exposed the yellow carotenoid pigments. LHCB1 and CLS1 gene expressions were decreased, while PPH2 and PPH3 gene expressions were increased, indicating that downregulation of chlorophyll biosynthesis and upregulation of its degradation, caused chlorophyll degradation. A decrease in the expression of the late carotenoid biosynthesis and maintenance genes (LCYB1, LCYE1, CYP1, CYP2, ZEP1, VDE1, VDE2, and NCED2) and degradation gene (CCD1), showed biosynthesis and degradation of carotenoid could be regulatory factors involved in fruit development. Most genes expression data of L-galactose and recycling pathway were agreement with the AsA concentrations in the fruit, suggesting these are the predominant pathways of AsA biosynthesis. GMP1, GME1 and GGP1 were identified as the key genes controlling AsA biosynthesis in ‘Hongyang’ outer pericarp.
机译:分析了猕猴桃“红阳”外果皮中的抗坏血酸(AsA),叶绿素和类胡萝卜素含量及其相关基因表达模式。结果表明,在果实发育和软化过程中叶绿素降解,暴露出黄色类胡萝卜素色素。 LHCB1和CLS1基因表达减少,而PPH2和PPH3基因表达增加,表明叶绿素生物合成的下调和其降解的上调引起叶绿素降解。晚期类胡萝卜素生物合成和维持基因(LCYB1,LCYE1,CYP1,CYP2,ZEP1,VDE1,VDE2和NCED2)和降解基因(CCD1)的表达降低,表明类胡萝卜素的生物合成和降解可能是参与调控的因素果实发育。 L-半乳糖和回收途径的大多数基因表达数据与果实中的AsA浓度一致,表明这些是AsA生物合成的主要途径。 GMP1,GME1和 GGP1 被确定为控制“洪阳”外果皮中AsA生物合成的关键基因。

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