花青素
转录因子
细胞生物学
生物
非生物胁迫
非生物成分
光强度
MYB公司
光敏色素
生物化学
分解代谢
适应(眼睛)
化学
拟南芥
蛋白酶体
植物
生物合成
机制(生物学)
次生代谢
蛋白质降解
基因表达调控
代谢途径
作者
Runzi Feng,Xi Chen,Xiuying Shen,Nazi Niu,Yacong Wang,Jing Zhang,Ru Meng,Yang Du,Jishan Jiang
摘要
Anthocyanin is an antioxidant that enhances plant resilience against diverse biotic and abiotic stresses. Although high light intensity is known to enhance anthocyanin production, the underlying regulatory mechanisms are poorly understood. In this study, we identified an R2R3 MYB transcription factor MsMYB17 in alfalfa that promotes anthocyanin biosynthesis under both normal and high light conditions. Overexpression of MsMYB17 in alfalfa reduces plant height, internode length, and stem diameter without affecting plant internode number. Genetic and biochemical experiments demonstrate that MsMYB17 directly binds to and activates the promoters of MsDFR and MsANS, thereby promoting anthocyanin accumulation, which in turn reduces lignin content and inhibits plant growth under normal light conditions. Furthermore, high light enhances MsMYB17 expression and stabilises MsMYB17 protein by attenuating MsCOP1-mediated MsMYB17 degradation via the 26S proteasome pathway, thereby promoting anthocyanin production through the MsMYB17-MsDFR/MsANS module. Collectively, our findings reveal a light adaptation mechanism in alfalfa that integrates transcriptional and post-translational regulation of MsMYB17 to modulate anthocyanin biosynthesis. This study provides novel insights into the molecular mechanisms by which plants fine-tune specialised metabolism under fluctuating light conditions, and positions MsMYB17 as a potential target for enhancing stress resilience and forage quality in alfalfa.
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