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Red Chinese Cabbage Transcriptome Analysis Reveals Structural Genes and Multiple Transcription Factors Regulating Reddish Purple Color

机译:红色大白菜转录组分析揭示了结构基因和调节红紫色颜色的多种转录因子

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摘要

Reddish purple Chinese cabbage (RPCC) is a popular variety of Brassica rapa (AA = 20). It is rich in anthocyanins, which have many health benefits. We detected novel anthocyanins including cyanidin 3-(feruloyl) diglucoside-5-(malonoyl) glucoside and pelargonidin 3-(caffeoyl) diglucoside-5-(malonoyl) glucoside in RPCC. Analyses of transcriptome data revealed 32,395 genes including 3345 differentially expressed genes (DEGs) between 3-week-old RPCC and green Chinese cabbage (GCC). The DEGs included 218 transcription factor (TF) genes and some functionally uncharacterized genes. Sixty DEGs identified from the transcriptome data were analyzed in 3-, 6- and 9-week old seedlings by RT-qPCR, and 35 of them had higher transcript levels in RPCC than in GCC. We detected cis-regulatory motifs of MYB, bHLH, WRKY, bZIP and AP2/ERF TFs in anthocyanin biosynthetic gene promoters. A network analysis revealed that MYB75, MYB90, and MYBL2 strongly interact with anthocyanin biosynthetic genes. Our results show that the late biosynthesis genes BrDFR, BrLDOX, BrUF3GT, BrUGT75c1-1, Br5MAT, BrAT-1, BrAT-2, BrTT19-1, and BrTT19-2 and the regulatory MYB genes BrMYB90, BrMYB75, and BrMYBL2-1 are highly expressed in RPCC, indicative of their important roles in anthocyanin biosynthesis, modification, and accumulation. Finally, we propose a model anthocyanin biosynthesis pathway that includes the unique anthocyanin pigments and genes specific to RPCC.
机译:Reddish紫色大白菜(RPCC)是一种流行的芸苔属rapa(aa = 20)。它富含花青素,具有许多健康益处。我们检测到新型花青素,包括Cyanidin 3-(Foruloyl)Diglucoside-5-(MalOnoyl)葡萄糖苷和Pelargonidin 3-(咖啡酰基)在RPCC中的葡糖苷-5-(Malonoyl)葡糖苷。转录组数据的分析显示32,395个基因,其中包括3周龄RPCC和绿色白菜(GCC)之间的3345个差异表达基因(DEGS)。 DEG包括218转录因子(TF)基因和一些功能上不具巧的基因。通过RT-QPCR在3-,6-周和9周龄幼苗中鉴定出从转录组数据中鉴定的六十℃,其中35只具有RPCC的转录水平较高,而不是GCC。我们在花青素生物合成基因启动子中检测了MYB,BHLH,WRKY,BZIP和AP2 / ERF TFS的CIS-SCOUNTIFIS。网络分析显示MyB75,MyB90和MyBl2与花青素生物合成基因相互作用。我们的研究结果表明,已故的生物合成基因BRDFR,BRLDOX,BRUF3GT,BRUGT75C1-1,BR5MAT,BRT-1,BRAT-2,BRTT19-1和BRTT19-2以及BRMYB90,BRMYB75和BRMYBL2-1的调节MYB基因在RPCC中表达高度表达,表明其在花青素生物合成,修改和积累中的重要作用。最后,我们提出了一种模型的花青素生物合成途径,其包括独特的花青素颜料和特异于RPCC的基因。

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