花青素
代谢组
转录组
光形态发生
类黄酮
拟南芥
生物
转录因子
适应(眼睛)
化学
代谢组学
食品科学
植物生理学
生物化学
抄写(语言学)
黄酮醇
细胞生物学
基因表达
植物
基因表达调控
机制(生物学)
多酚
转录调控
基因
发起人
作者
Shuting Zhang,Zhenbiao Jiao,Zhixiong Liu,Zhaoxin Peng,Lei Cui,Zhen Hu,Zhongjiu Jiao,Qingyun Yuan,Zhengming Qiu,Chenghuan Yan
标识
DOI:10.1021/acs.jafc.5c08530
摘要
Ultraviolet-B (UV–B) radiation profoundly affects plant photomorphogenesis and secondary metabolism, yet its regulatory role in lettuce ( Lactuca sativa ) remains poorly understood. We conducted metabolome and transcriptome analyses to reveal the molecular basis of UV–B adaptation in highland-grown lettuce. Flavonoid accumulation was enhanced as a key adaptive strategy for UV–B acclimation. The key UV–B signaling components LsHY5a / b showed positive correlations with ten LsBBXs and flavonoid/anthocyanin-related genes. UV–B treatment rapidly induced the transcription of LsHY5a / b and LsBBX22-1 . LsBBX22-1 physically interacted with LsHY5a/b. While LsBBX22-1 activated the expression of anthocyanin-related genes, it could not bind directly to their promoters. By contrast, LsHY5a/b directly bound to the promoters of LsCHS1, LsCHI3, and LsF3H . Thus, LsBBX22 and LsHY5a/b acted synergistically to regulate UV–B-induced anthocyanin biosynthesis. This study clarified the molecular mechanism of the LsBBX22-1–LsHY5a/b module in promoting UV–B-induced anthocyanin accumulation in lettuce, providing a theoretical basis for cultivating high-quality vegetables in highland regions.
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