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Arabidopsis R2R3-MYB transcription factor AtMYB60 functions as a transcriptional repressor of anthocyanin biosynthesis in lettuce (Lactuca sativa)

机译:拟南芥R2R3-MYB转录因子AtMYB60用作莴苣中花青素生物合成的转录阻遏物

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摘要

The MYB transcription factors play important roles in the regulation of many secondary metabolites at the transcriptional level. We evaluated the possible roles of the Arabidopsis R2R3-MYB transcription factors in flavonoid biosynthesis because they are induced by UV-B irradiation but their associated phenotypes are largely unexplored. We isolated their genes by RACE-PCR, and performed transgenic approach and metabolite analyses in lettuce (Lactuca sativa). We found that one member of this protein family, AtMYB60, inhibits anthocyanin biosynthesis in the lettuce plant. Wild-type lettuce normally accumulates anthocyanin, predominantly cyanidin and traces of delphinidin, and develops a red pigmentation. However, the production and accumulation of anthocyanin pigments in AtMYB60-overexpressing lettuce was inhibited. Using RT-PCR analysis, we also identified the complete absence or reduction of dihydroflavonol 4-reductase (DFR) transcripts in AtMYB60- overexpressing lettuce (AtMYB60-117 and AtMYB60-112 lines). The correlation between the overexpression of AtMYB60 and the inhibition of anthocyanin accumulation suggests that the transcription factorAtMYB60 controls anthocyanin biosynthesis in the lettuce leaf. Clarification of the roles of the AtMYB60 transcription factor will facilitate further studies and provide genetic tools to better understand the regulation in plants of the genes controlled by the MYB-type transcription factors. Furthermore, the characterization of AtMYB60 has implications for the development of new varieties of lettuce and other commercially important plants with metabolic engineering approaches.
机译:MYB转录因子在转录水平上许多次级代谢产物的调节中起重要作用。我们评估了拟南芥R2R3-MYB转录因子在类黄酮生物合成中的可能作用,因为它们是由UV-B辐射诱导的,但是它们的相关表型在很大程度上尚待探索。我们通过RACE-PCR分离了它们的基因,并在生菜(Lactuca sativa)中进行了转基因方法和代谢物分析。我们发现该蛋白质家族的一个成员AtMYB60抑制了莴苣植物中花色苷的生物合成。野生型生菜通常会积聚花色苷,主要是花青素和微量的翠雀菌素,并形成红色色素沉着。但是,花青素色素在过表达AtMYB60的生菜中的产生和积累受到抑制。使用RT-PCR分析,我们还确定了在过表达AtMYB60的生菜中(AtMYB60-117和AtMYB60-112品系)二氢黄酮醇4-还原酶(DFR)转录本的完全不存在或减少。 AtMYB60的过表达与花青素积累的抑制之间的相关性表明,转录因子AtMYB60控制着莴苣叶中的花青素生物合成。阐明AtMYB60转录因子的作用将有助于进一步的研究,并提供遗传工具,以更好地了解植物中由MYB型转录因子控制的基因的调控。此外,AtMYB60的表征对于通过代谢工程方法开发莴苣和其他商业上重要的植物新品种具有重要意义。

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