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Three R2R3-MYB Transcription Factors Regulate Distinct Floral Pigmentation Patterning in Phalaenopsis spp.

机译:三个R2R3-MYB转录因子调节蝴蝶兰不同的花卉色素沉着模式。

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摘要

Orchidaceae are well known for their fascinating floral morphologic features, specialized pollination, and distinctive ecological strategies. With their long-lasting flowers of various colors and pigmentation patterning, Phalaenopsis spp. have become important ornamental plants worldwide. In this study, we identified three R2R3-MYB transcription factors PeMYB2, PeMYB11, and PeMYB12. Their expression profiles were concomitant with red color formation in Phalaenopsis spp. flowers. Transient assay of overexpression of three PeMYBs verified that PeMYB2 resulted in anthocyanin accumulation, and these PeMYBs could activate the expression of three downstream structural genes Phalaenopsis spp. Flavanone 3-hydroxylase5, Phalaenopsis spp. Dihydroflavonol 4-reductase1, and Phalaenopsis spp. Anthocyanidin synthase3. In addition, these three PeMYBs participated in the distinct pigmentation patterning in a single flower, which was revealed by virus-induced gene silencing. In the sepals/petals, silencing of PeMYB2, PeMYB11, and PeMYB12 resulted in the loss of the full-red pigmentation, red spots, and venation patterns, respectively. Moreover, different pigmentation patterning was regulated by PeMYBs in the sepals/petals and lip. PeMYB11 was responsive to the red spots in the callus of the lip, and PeMYB12 participated in the full pigmentation in the central lobe of the lip. The differential pigmentation patterning was validated by RNA in situ hybridization. Additional assessment was performed in six Phalaenopsis spp. cultivars with different color patterns. The combined expression of these three PeMYBs in different ratios leads to a wealth of complicated floral pigmentation patterning in Phalaenopsis spp.
机译:兰科以其迷人的花卉形态特征,专门的授粉和独特的生态策略而闻名。蝴蝶兰具有持久的各种颜色的花和色素沉着图案。已成为全球重要的观赏植物。在这项研究中,我们确定了三个R2R3-MYB转录因子PeMYB2,PeMYB11和PeMYB12。它们的表达谱与蝴蝶兰中的红色形成相伴。花卉。瞬时检测三种PeMYB的过度表达证明,PeMYB2导致花青素积聚,并且这些PeMYB可以激活三个下游结构基因蝴蝶兰的表达。黄烷酮3-羟化酶5,蝴蝶兰属。二氢黄酮醇4-还原酶1和蝴蝶兰spp。花青素合酶3。此外,这三种PeMYBs参与了单朵花中独特的色素沉着模式,这通过病毒诱导的基因沉默得以揭示。在萼片/花瓣中,PeMYB2, PeMYB11 PeMYB12 的沉默分别导致全红色色素沉着,红色斑点和静脉纹的丧失。此外,在萼片/花瓣和嘴唇中的 PeMYB 调节着不同的色素沉着模式。 PeMYB11 对嘴唇愈伤组织的红斑有反应,而 PeMYB12 参与了唇中央叶的全色素沉着。 RNA原位杂交验证了差异化的色素沉着模式。在六个蝴蝶兰属植物中进行了额外的评估。不同颜色图案的品种。这三种 PeMYB 的不同比例的组合表达导致蝴蝶兰 spp中大量复杂的花卉色素沉着模式。

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