首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Positive Selection and Functional Divergence of R2R3-MYB Paralogous Genes Expressed in Inflorescence Buds of Scutellaria Species (Labiatae)
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Positive Selection and Functional Divergence of R2R3-MYB Paralogous Genes Expressed in Inflorescence Buds of Scutellaria Species (Labiatae)

机译:黄cut花序芽中表达的R2R3-MYB旁系基因的阳性选择和功能差异

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摘要

Anthocyanin is the main pigment forming floral diversity. Several transcription factors that regulate the expression of anthocyanin biosynthetic genes belong to the R2R3-MYB family. Here we examined the transcriptomes of inflorescence buds of Scutellaria species (skullcaps), identified the expression R2R3-MYBs, and detected the genetic signatures of positive selection for adaptive divergence across the rapidly evolving skullcaps. In the inflorescence buds, seven R2R3-MYBs were identified. MYB11 and MYB16 were detected to be positively selected. The signature of positive selection on MYB genes indicated that species diversification could be affected by transcriptional regulation, rather than at the translational level. When comparing among the background lineages of Arabidopsis, tomato, rice, and Amborella, heterogeneous evolutionary rates were detected among MYB paralogs, especially between MYB13 and MYB19. Significantly different evolutionary rates were also evidenced by type-I functional divergence between MYB13 and MYB19, and the accelerated evolutionary rates in MYB19, implied the acquisition of novel functions. Another paralogous pair, MYB2/7 and MYB11, revealed significant radical amino acid changes, indicating divergence in the regulation of different anthocyanin-biosynthetic enzymes. Our findings not only showed that Scutellaria R2R3-MYBs are functionally divergent and positively selected, but also indicated the adaptive relevance of regulatory genes in floral diversification.
机译:花青素是形成花的多样性的主要色素。调节花色苷生物合成基因表达的几种转录因子属于R2R3-MYB家族。在这里,我们检查了黄cut(Scapellaria)物种(黄ull)花序的转录组,鉴定了R2R3-MYBs的表达,并检测了正选择的遗传特征,以适应迅速发展的黄cap的适应性发散。在花序芽中,鉴定出七个R2R3-MYB。检测到MYB11和MYB16被阳性选择。 MYB基因正选择的特征表明,物种多样化可能受转录调控的影响,而不是受翻译水平的影响。在拟南芥,番茄,水稻和Amborella的背景谱系之间进行比较时,在MYB旁系同源物中,特别是在MYB13和MYB19之间,检测到异质进化速率。 MYB13和MYB19之间的I型功能差异也证明了显着不同的进化速率,而MYB19中加速的进化速率也暗示了新功能的获得。另一个旁系对, MYB2 / 7 MYB11 ,显示出显着的自由基氨基酸变化,表明不同花色苷生物合成酶的调控存在差异。我们的发现不仅表明黄cutR2R3-MYBs 在功能上有差异并且被正向选择,而且还表明调控基因在花卉多样化中的适应性相关性。

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