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首页> 外文期刊>BMC Plant Biology >An apple MYB transcription factor, MdMYB3 , is involved in regulation of anthocyanin biosynthesis and flower development
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An apple MYB transcription factor, MdMYB3 , is involved in regulation of anthocyanin biosynthesis and flower development

机译:苹果MYB转录因子MdMYB3参与花色苷生物合成和花朵发育的调控

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Background Red coloration of fruit is an important trait in apple, and it is mainly attributed to the accumulation of anthocyanins, a class of plant flavonoid metabolites. Anthocyanin biosynthesis is genetically determined by structural and regulatory genes. Plant tissue pigmentation patterns are mainly controlled by expression profiles of regulatory genes. Among these regulatory genes are MYB transcription factors (TFs), wherein the class of two-repeats (R2R3) is deemed the largest, and these are associated with the anthocyanin biosynthesis pathway. Although three MdMYB genes, almost identical in nucleotide sequences, have been identified in apple, it is likely that there are other R2R3 MYB TFs that are present in the apple genome that are also involved in the regulation of coloration of red color pigmentation of the skin of apple fruits. Results In this study, a novel R2R3 MYB gene has been isolated and characterized in apple. This MYB gene is closely related to the Arabidopsis thaliana AtMYB3 , and has been designated as MdMYB3 . This TF belongs to the subgroup 4 R2R3 family of plant MYB transcription factors. This apple MdMYB3 gene is mapped onto linkage group 15 of the integrated apple genetic map. Transcripts of MdMYB3 are detected in all analyzed tissues including leaves, flowers, and fruits. However, transcripts of MdMYB3 are higher in excocarp of red-skinned apple cultivars than that in yellowish-green skinned apple cultivars. When this gene is ectopically expressed in Nicotiana tabacum cv. Petite Havana SR1, flowers of transgenic tobacco lines carrying MdMYB3 have exhibited increased pigmentation and accumulate higher levels of anthocyanins and flavonols than wild-type flowers. Overexpression of MdMYB3 has resulted in transcriptional activation of several flavonoid pathway genes, including CHS , CHI , UFGT , and FLS . Moreover, peduncles of flowers and styles of pistils of transgenic plants overexpressing MdMYB3 are longer than those of wild-type plants, thus suggesting that this TF is involved in regulation of flower development. Conclusions This study has identified a novel MYB transcription factor in the apple genome. This TF, designated as MdMYB3 , is involved in transcriptional activation of several flavonoid pathway genes. Moreover, this TF not only regulates the accumulation of anthocyanin in the skin of apple fruits, but it is also involved in the regulation of flower development, particularly that of pistil development.
机译:背景技术水果的红色是苹果的一个重要特征,它主要归因于花青素的积累,这是一类植物类黄酮代谢产物。花青素的生物合成由结构和调节基因遗传决定。植物组织的色素沉着模式主要受调节基因的表达谱控制。这些调节基因中有MYB转录因子(TFs),其中两次重复(R2R3)类被认为是最大的,并且这些与花色苷生物合成途径有关。尽管在苹果中已鉴定出三个核苷酸序列几乎相同的MdMYB基因,但苹果基因组中可能还存在其他R2R3 MYB TF,它们也参与了皮肤红色色素的着色调节。苹果果实。结果在这项研究中,一个新的R2R3 MYB基因已被分离并鉴定为苹果。该MYB基因与拟南芥AtMYB3密切相关,被命名为MdMYB3。该TF属于植物MYB转录因子的亚组4 R2R3家族。该苹果MdMYB3基因被定位到整合的苹果遗传图谱的连锁群15上。在所有分析的组织(包括叶子,花朵和果实)中都检测到MdMYB3的转录本。但是,红皮苹果品种外果皮中MdMYB3的转录水平高于黄绿色皮苹果品种中。当该基因在烟草(Nicotiana tabacum)cv中异位表达时。携带MdMYB3的转基因烟草系小哈瓦那SR1的花,与野生型花相比,色素沉着增加,并且花青素和黄酮醇的含量更高。 MdMYB3的过表达导致几种类黄酮途径基因的转录激活,包括CHS,CHI,UFGT和FLS。而且,过表达MdMYB3的转基因植物的花梗和雌蕊的花序比野生型植物长,因此表明该TF参与花发育的调节。结论本研究在苹果基因组中鉴定了一种新型的MYB转录因子。称为MdMYB3的TF参与了几种类黄酮途径基因的转录激活。而且,该TF不仅调节苹果果实表皮中的花色苷的积累,而且还参与花发育的调节,特别是雌蕊发育的调节。

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