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Ectopic Expression of the Coleus R2R3 MYB-Type Proanthocyanidin Regulator Gene SsMYB3 Alters the Flower Color in Transgenic Tobacco

机译:彩叶R2R3 MYB型原花色素调节基因SsMYB3的异位表达改变转基因烟草中的花色

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摘要

Proanthocyanidins (PAs) play an important role in plant disease defense and have beneficial effects on human health. We isolated and characterized a novel R2R3 MYB-type PA-regulator SsMYB3 from a well-known ornamental plant, coleus (Solenostemon scutellarioides), to study the molecular regulation of PAs and to engineer PAs biosynthesis. The expression level of SsMYB3 was correlated with condensed tannins contents in various coleus tissues and was induced by wounding and light. A complementation test in the Arabidopsis tt2 mutant showed that SsMYB3 could restore the PA-deficient seed coat phenotype and activated expression of the PA-specific gene ANR and two related genes, DFR and ANS. In yeast two-hybrid assays, SsMYB3 interacted with the Arabidopsis AtTT8 and AtTTG1 to reform the ternary transcriptional complex, and also interacted with two tobacco bHLH proteins (NtAn1a and NtJAF13-1) and a WD40 protein, NtAn11-1. Ectopic overexpression of SsMYB3 in transgenic tobacco led to almost-white flowers by greatly reducing anthocyanin levels and enhancing accumulation of condensed tannins. This overexpression of SsMYB3 upregulated the key PA genes (NtLAR and NtANR) and late anthocyanin structural genes (NtDFR and NtANS), but downregulated the expression of the final anthocyanin gene NtUFGT. The formative SsMYB3-complex represses anthocyanin accumulation by directly suppressing the expression of the final anthocyanin structural gene NtUFGT, through competitive inhibition or destabilization of the endogenous NtAn2-complex formation. These results suggested that SsMYB3 may form a transcription activation complex to regulate PA biosynthesis in the Arabidopsis tt2 mutant and transgenic tobacco. Our findings suggest that SsMYB3 is involved in the regulation of PA biosynthesis in coleus and has the potential as a molecular tool for manipulating biosynthesis of PAs in fruits and other crops using metabolic engineering.
机译:原花青素(PAs)在植物疾病防御中发挥重要作用,并对人体健康产生有益影响。我们从著名的观赏植物锦紫苏(Solenostemon scutellarioides)分离并鉴定了一种新型的R2R3 MYB型PA调控因子SsMYB3,以研究PA的分子调控并设计PA的生物合成。 SsMYB3的表达水平与各个结肠组织中单宁浓缩的含量有关,并受伤口和光照的诱导。在拟南芥tt2突变体中的互补测试表明,SsMYB3可以恢复PA缺失的种皮表型,并激活PA特异性基因ANR和两个相关基因DFR和ANS的表达。在酵母双杂交检测中,SsMYB3与拟南芥属AtTT8和AtTTG1相互作用以重组成三元转录复合体,并且还与两种烟草bHLH蛋白(NtAn1a和NtJAF13-1)和WD40蛋白NtAn11-1相互作用。 SsMYB3在转基因烟草中的异位过表达通过大大降低花色苷水平和增强缩合单宁的积累,导致了几乎白色的花朵。 SsMYB3的这种过表达上调了关键的PA基因(NtLAR和NtANR)和后期的花色苷结构基因(NtDFR和NtANS),但下调了最终花色苷基因NtUFGT的表达。形成性SsMYB3复合物通过竞争性抑制或破坏内源性NtAn2复合物的形成,直接抑制最终花色苷结构基因 NtUFGT 的表达,从而抑制花色苷的积累。这些结果表明SsMYB3可能形成转录激活复合物,以调节拟南芥tt2 突变体和转基因烟草中的PA生物合成。我们的研究结果表明, SsMYB3 参与了锦紫苏中PA生物合成的调控,并有可能作为分子工具,利用代谢工程技术来操纵水果和其他农作物中PA的生物合成。

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