Li Jing, Ren Li, Gao Zhen, Jiang Mingmin, Liu Yang, Zhou Lu, He Yongjun, Chen Huoying
School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Minhang District, Shanghai, 200240, China.
Institute for Agri-Food Standards and Testing Technology, Shanghai Academy of Agricultural Sciences, 1000 Jinqi Road, Fengxian District, Shanghai, 201403, China.
Plant Cell Environ. 2017 Dec;40(12):3069-3087. doi: 10.1111/pce.13074. Epub 2017 Oct 17.
Light is a key environmental factor affecting anthocyanin biosynthesis. Our previous study demonstrated that "Lanshan Hexian" is a light-sensitive eggplant cultivar, but its regulatory mechanism is unknown. Here, delphinidin-3-[4-(cis-p-coumaroyl)-rhamnosyl-glucopyranoside]-5-glucopyranoside and delphinidin-3-[4-(trans-p-coumaroyl)-rhamnosyl-glucopyranoside]-5-glucopyranoside were identified as the main anthocyanin components in Lanshan Hexian by ultra-performance liquid chromatography-tandem mass spectrometry. Three time points of anthocyanin accumulation, including the start point (0 day), fastest point (5 days), and highest point (12 day), were investigated by using ribonucleic acid sequencing and iTRAQ technology. The corresponding correlation coefficients of differentially expressed genes, and differentially expressed proteins were 0.6936, 0.2332, and 0.6672. Anthocyanin biosynthesis was a significantly enriched pathway, and CHI, F3H, 3GT, 5GT, and HY5 were regulated at both transcriptional and translational levels. Moreover, some transcription factors and photoreceptors may participate in light-induced anthocyanin biosynthesis like the known transcription factors MYB113 and TT8. The transient expression assay indicated that SmMYB35, SmMYB44, and a SmMYB86 isoform might involve in the light-induced anthocyanin biosynthesis pathway. Finally, a regulatory model for light-induced anthocyanin biosynthesis in eggplant was constructed. Our work provides a new direction for the study of the molecular mechanisms of light-induced anthocyanin biosynthesis in eggplant.
光是影响花青素生物合成的关键环境因素。我们之前的研究表明,“兰山合线”是一个光敏感茄子品种,但其调控机制尚不清楚。在此,通过超高效液相色谱-串联质谱法鉴定出飞燕草素-3-[4-(顺式-对香豆酰基)-鼠李糖基-吡喃葡萄糖苷]-5-吡喃葡萄糖苷和飞燕草素-3-[4-(反式-对香豆酰基)-鼠李糖基-吡喃葡萄糖苷]-5-吡喃葡萄糖苷是兰山合线中主要的花青素成分。利用核糖核酸测序和iTRAQ技术研究了花青素积累的三个时间点,包括起始点(0天)、最快点(5天)和最高点(12天)。差异表达基因和差异表达蛋白的相应相关系数分别为0.6936、0.2332和0.6672。花青素生物合成是一条显著富集的途径,CHI、F3H、3GT、5GT和HY5在转录和翻译水平上均受到调控。此外,一些转录因子和光感受器可能像已知的转录因子MYB113和TT8一样参与光诱导的花青素生物合成。瞬时表达分析表明,SmMYB35、SmMYB44和一个SmMYB86异构体可能参与光诱导的花青素生物合成途径。最后,构建了茄子光诱导花青素生物合成的调控模型。我们的工作为茄子光诱导花青素生物合成分子机制的研究提供了新的方向。