Hou Wenqian, Yan Ping, Shi Tianye, Lu Pengzhou, Zhao Weiwei, Yang Huimin, Zeng Liqian, Yang Jun, Li Zongyun, Fan Weijuan, Zhang Lei
Jiangsu Key Laboratory of Phylogenomics & Comparative Genomics, School of Life Sciences, Jiangsu Normal University, 101 Shanghai Street, Xuzhou, 221100, Jiangsu Province, People's Republic of China.
Jiangsu Key Laboratory of Phylogenomics & Comparative Genomics, School of Life Sciences, Jiangsu Normal University, 101 Shanghai Street, Xuzhou, 221100, Jiangsu Province, People's Republic of China.
Plant Physiol Biochem. 2023 Mar;196:868-879. doi: 10.1016/j.plaphy.2023.02.050. Epub 2023 Mar 2.
The storage roots of purple-fleshed sweetpotato rich in anthocyanins are considered nutrient-rich foods with health effects. However, the molecular mechanism underlying anthocyanin biosynthesis and regulation remains to be revealed. In this study, IbMYB1-2 was isolated from purple-fleshed sweetpotato "Xuzishu8". The phylogenetic and sequence analysis indicated that IbMYB1-2 belongs to the SG6 subfamily with a conserved bHLH motif. Subcellular localization analysis and transcriptional activity assay revealed that IbMYB1-2 is a key transcriptional activator and is specific to the nucleus. Agrobacterium rhizogenes-mediated overexpression of IbMYB1-2 in sweetpotato through in vivo root transgenic system led to an increase in anthocyanins in the root of sweetpotato. qRT-PCR and transcriptome analysis depicted that the transcript levels of IbMYB1-2, IbbHLH42, and eight structural genes that are associated with the synthesis of anthocyanin were upregulated in overexpressed IbMYB1-2 transgenic roots. Dual-luciferase reporter (DLR) assay and yeast one-hybrid (Y1H) assay demonstrated IbMYB1-2 binding to the promoter regions of IbbHLH42 and other anthocyanin biosynthetic genes, including IbCHS, IbCHI, IbF3H, IbDFR, IbANS, IbGSTF12, IbUGT78D2, and IbUF3GT. Moreover, IbbHLH42 was shown to be an active enhancer for the formation of MYB-bHLH-WD40 (MBW) complex, which strongly supports the promoter activities of the IbCHS, IbANS, IbUGT78D2, and IbGSTF12 genes to induce anthocyanin accumulation. Taken together, our findings not only revealed the underlying regulatory molecular mechanism of IbMYB1-2 for anthocyanin accumulation in the storage roots of sweetpotato but also uncovered a potential mechanism by which IbbHLH42 modulated anthocyanin biosynthesis through a positive feedback regulatory loop.
富含花青素的紫肉甘薯的贮藏根被认为是具有健康功效的营养丰富的食物。然而,花青素生物合成和调控的分子机制仍有待揭示。在本研究中,从紫肉甘薯“徐紫薯8号”中分离出IbMYB1-2。系统发育和序列分析表明,IbMYB1-2属于具有保守bHLH基序的SG6亚家族。亚细胞定位分析和转录活性测定表明,IbMYB1-2是一种关键的转录激活因子,且特异性定位于细胞核。通过发根农杆菌介导的体内根转基因系统在甘薯中过表达IbMYB1-2,导致甘薯根中花青素增加。qRT-PCR和转录组分析表明,在过表达IbMYB1-2的转基因根中,IbMYB1-2、IbbHLH42以及八个与花青素合成相关的结构基因的转录水平上调。双荧光素酶报告基因(DLR)分析和酵母单杂交(Y1H)分析表明,IbMYB1-2与IbbHLH42以及其他花青素生物合成基因(包括IbCHS、IbCHI、IbF3H、IbDFR、IbANS、IbGSTF12、IbUGT78D2和IbUF3GT)的启动子区域结合。此外,IbbHLH42被证明是形成MYB-bHLH-WD40(MBW)复合体的活性增强子,这有力地支持了IbCHS、IbANS、IbUGT78D2和IbGSTF12基因的启动子活性,以诱导花青素积累。综上所述,我们的研究结果不仅揭示了IbMYB1-2在甘薯贮藏根中花青素积累的潜在调控分子机制,还揭示了IbbHLH42通过正反馈调节环调节花青素生物合成的潜在机制。