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Kiwifruit R2R3-MYB transcription factors and contribution of the novel AcMYB75 to red kiwifruit anthocyanin biosynthesis

机译:猕猴桃R2R3-MYB转录因子和新型AcMYB75对红色猕猴桃花色苷生物合成的贡献

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摘要

Red kiwifruit (Actinidia chinensis) is a popular fresh fruit with a high market value due to its unique color, caused by anthocyanin accumulation. The R2R3-MYB transcription factors (TFs) have important roles in plant development and anthocyanin metabolism. In this first comprehensive study of R2R3-MYBs in kiwifruit, a total of 93 R2R3-MYB genes, including five novel previously unannotated AcMYBs, were identified. Their phylogenic relationship, exon-intron structures, and conserved motifs were analyzed. Based on transcriptome data, 60 AcMYBs were expressed (FPKM > 1) across seven developmental stages of kiwifruit, revealing five expression patterns. One of the 5 newly identified R2R3 TFs, AcMYB75, showed an anthocyanin accumulation-linked expression pattern during fruit development. AcMYB75 localized to the nucleus and has an active transactivation domain, verifying it as a transcription factor. AcMYB75 protein specifically bound the promoter of the anthocyanin biosynthesis gene ANS in yeast one-hybrid system and in vivo. In 35 S:AcMYB75 Arabidopsis plants, anthocyanin significantly accumulated in leaves, and the expression of anthocyanin biosynthetic genes was greatly up-regulated. Together, these results suggest that AcMYB75 is involved in anthocyanin biosynthesis in kiwifruit. These findings will increase our understanding of AcMYBs involved in anthocyanin biosynthesis, and also benefit further functional characterization of R2R3-MYB genes in kiwifruit.
机译:红色奇异果(猕猴桃)是一种流行的新鲜水果,由于其花青素的积累而具有独特的颜色,因此具有很高的市场价值。 R2R3-MYB转录因子(TFs)在植物发育和花色苷代谢中具有重要作用。在对猕猴桃中R2R3-MYB的首次全面研究中,共鉴定了93个R2R3-MYB基因,包括五个以前未注释的新的AcMYBs。分析了它们的系统发生关系,外显子-内含子结构和保守基序。根据转录组数据,在猕猴桃的七个发育阶段表达了60个AcMYB(FPKM> 1),揭示了五个表达模式。新鉴定的5个R2R3 TF之一AcMYB75在水果发育过程中显示出花青素积累相关的表达模式。 AcMYB75定位于细胞核,并具有一个活跃的反式激活结构域,证实它是转录因子。 AcMYB75蛋白在酵母一杂交系统中和体内特异性结合花色苷生物合成基因ANS的启动子。在35 S:AcMYB75拟南芥植物中,花色苷在叶片中大量积累,花色苷生物合成基因的表达上调。总之,这些结果表明AcMYB75参与了猕猴桃中花色苷的生物合成。这些发现将增进我们对参与花色苷生物合成的AcMYBs的了解,也有利于猕猴桃R2R3-MYB基因的进一步功能表征。

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