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首页> 外文期刊>Journal of Plant Growth Regulation >Expression Profiling of Several Gene Families Involved in Anthocyanin Biosynthesis in Apple (Malus domestica Borkh.) Skin During Fruit Development
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Expression Profiling of Several Gene Families Involved in Anthocyanin Biosynthesis in Apple (Malus domestica Borkh.) Skin During Fruit Development

机译:苹果(Malus domestica Borkh。)果皮发育过程中涉及花色苷生物合成的几个基因家族的表达谱

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摘要

Anthocyanins are secondary metabolites in higher plants that contribute to the colors of flowers and fruits. MYB, bHLH, and UFGT genes are key genes in fruit anthocyanin synthesis. We identified two MYB1 genes, two bHLH3 genes, three bHLH33 genes, and four UFGT genes in the apple (Malus domestica Borkh.) genome and analyzed the expression of these genes in apple skin at the fruitlet stage and ripening fruit stage, two peaks of anthocyanin accumulation in apple skin. Results showed that the two MYB genes, one bHLH3 gene, one bHLH33 gene, and two UFGT genes were involved in anthocyanin synthesis. MdbHLH3-1 and MdbHLH33-1 transcript levels were correlated with anthocyanin accumulation in the four cultivars during fruit development. However, there was variation in MdMYBs and MdUFGTs expression patterns at different fruit development stages among cultivars. Transcript levels of MdMYB1a and MdUFGT2-1 were higher in the red skin of young fruit, whereas transcript levels of MdMYB1, MdUFGT2-1, and MdUFGT4 were higher in the red skin of ripening fruit. Besides, MdUFGT4 was only expressed in fruit skin of red cultivars, indicating that MdUFGT4 was important for anthocyanin synthesis in red skin cultivars. Furthermore, all these genes transcripts were induced by light. Our results indicated that MdMYB1a, MdMYB1, MdbHLH3-1, MdbHLH33-1, MdUFGT2-1, and MdUFGT4 were involved in apple skin anthocyanin synthesis, but they may function in different roles at different fruit development stages in different cultivars.
机译:花青素是高等植物中的次生代谢产物,有助于花朵和水果的颜色。 MYB,bHLH和UFGT基因是水果花色苷合成中的关键基因。我们在苹果(Malus domestica Borkh。)基因组中鉴定了两个MYB1基因,两个bHLH3基因,三个bHLH33基因和四个UFGT基因,并分析了这些基因在小果期和成熟期的苹果皮中的表达,两个峰为苹果皮中的花青素积聚。结果表明,两个MYB基因,一个bHLH3基因,一个bHLH33基因和两个UFGT基因参与花色苷的合成。 MdbHLH3-1和MdbHLH33-1转录水平与果实发育过程中四个品种的花色苷积累相关。然而,在不同的果实发育阶段,MdMYBs和MdUFGTs的表达模式存在差异。幼果红色皮肤中的MdMYB1a和MdUFGT2-1的转录水平较高,而成熟果实的红色皮肤中的MdMYB1,MdUFGT2-1和MdUFGT4的转录水平较高。此外,MdUFGT4仅在红色品种的果皮中表达,表明MdUFGT4对于红色皮肤品种中的花色苷合成很重要。此外,所有这些基因转录物都是由光诱导的。我们的结果表明,MdMYB1a,MdMYB1,MdbHLH3-1,MdbHLH33-1,MdUFGT2-1和MdUFGT4参与苹果皮花色苷的合成,但它们在不同品种的不同果实发育阶段可能发挥不同的作用。

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