Xue Xiaomin, Tian Shoule, Chen Ru, Han Xueping, Wang Jinzheng, Zhao Xianyan
Shandong Institute of Pomology, Tai'an, China.
State Key Laboratory of Biobased Material and Green Papermaking, School of Bioengineering, Qilu University of Technology, Jinan, China.
Front Plant Sci. 2022 Jul 28;13:946115. doi: 10.3389/fpls.2022.946115. eCollection 2022.
Many studies have demonstrated that anthocyanin synthesis in apple peel is induced by light, but the color of bagged apple peel continues to change under dark conditions after light induction has not been characterized. Here, transcriptional and metabolic changes associated with changes in apple peel coloration in the dark after different light induction treatments were studied. Apple pericarp can achieve a normal color under complete darkness followed by light induction. Metabolomics analysis indicated that the expression levels of cyanidin-3-O-galactoside and cyanidin-3-O-glucoside were high, which might be associated with the red color development of apple peel. Transcriptome analysis revealed high expression levels of s, s, and s, which might play a key role in light-induced anthocyanin accumulation under dark conditions. 13 key genes related to dark coloring after light induction was screened. The results of this study provide new insights into the mechanism of anthocyanin synthesis under dark conditions.
许多研究表明,苹果果皮中的花青素合成受光诱导,但光诱导后套袋苹果果皮在黑暗条件下颜色仍持续变化这一现象尚未得到表征。在此,研究了不同光诱导处理后苹果果皮在黑暗中颜色变化相关的转录和代谢变化。苹果果皮在完全黑暗后经光诱导可实现正常着色。代谢组学分析表明,矢车菊素-3-O-半乳糖苷和矢车菊素-3-O-葡萄糖苷的表达水平较高,这可能与苹果果皮的红色发育有关。转录组分析显示s、s和s的表达水平较高,这可能在黑暗条件下光诱导的花青素积累中起关键作用。筛选出了13个与光诱导后黑暗着色相关的关键基因。本研究结果为黑暗条件下花青素合成机制提供了新的见解。