首页> 外文期刊>The Horticulture Journal >Isolation of UDP:flavonoid 3-O-glycosyltransferase (UFGT)-like Genes and Expression Analysis of Genes Associated with Anthocyanin Accumulation in Mango 'Irwin' skin
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Isolation of UDP:flavonoid 3-O-glycosyltransferase (UFGT)-like Genes and Expression Analysis of Genes Associated with Anthocyanin Accumulation in Mango 'Irwin' skin

机译:UDP的分离:黄酮类化合物3-O-糖基转移酶(UFGT) - 与芒果皮肤中花青素积累相关的基因的基因及基因的表达分析

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摘要

The red coloration of the mango 'Irwin' skin is an important factor determining its value in the Japanese domestic luxury fruit market. In the present study, to investigate the molecular mechanism underlying anthocyanin biosynthesis of mango fruit skin, UFGT-like genes were isolated and the expression profile of anthocyanin-related genes was determined. Several UFGT-like genes were identified in transcriptome data of red 'Irwin' mango skin and two genes, MiUFGT1 and MiUFGT3, were considered to be involved in mango skin coloration. Deduced amino acid sequences of these genes exhibited high similarity to other plant UFGTs and contained the conserved PSPG box common to the glycosyltransferase family. The presence of a glutamine and a histidine residue at the C-terminus end of the PSPG box in MiUFGT1 and MiUFGT3, respectively, implied that MiUFGT1 and MiUFGT3 use glucose and galactose, respectively, as a sugar donor; however, the actual function and sugar donor preference of these enzymes remain to be elucidated. Expression analysis of anthocyanin-related genes during skin coloration suggested that MiCHS and MiANS, as well as MiUFGT1 and MiUFGT3, play important roles in the anthocyanin biosynthesis of mango fruit skin and that the expression of these genes is regulated by the MYB transcription factor, as reported in other plant species.
机译:芒果'Irwin'皮肤的红色着色是确定其在日本国内奢侈品水果市场中价值的重要因素。在本研究中,为了研究芒果果皮的花青素生物合成的分子机制,分离了UFGT样基因,测定了与青少年素相关基因的表达谱。在Red'Irwin'芒果皮肤和两个基因的转录组数据中鉴定了几种类似UFGT的基因,MIUFGT1和MIUFGT3被认为参与芒果肤色。推导出这些基因的氨基酸序列与其他植物UFGTS表现出高相似性,并含有糖基转移酶系列共用的保守的PSPG盒。在MIUFGT1和MIUFGT3的PSPG盒的C-末端存在谷氨酰胺和组氨酸残基,暗示MIUFGT1和MIUFGT3分别用糖和半乳糖作为糖供体;然而,仍然阐明这些酶的实际功能和糖供体偏好。在皮肤着色期间的嗜酸盐素相关基因的表达分析表明,MICH和MIANS,以及MIUFGT1和MIUFGT3,在芒果果皮的半月蛋白生物合成中起重要作用,并通过MYB转录因子调节这些基因的表达,如在其他植物物种中报道。

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