木质素
苜蓿
渗透性休克
MYB公司
转录组
WRKY蛋白质结构域
非生物胁迫
化学
生物化学
苜蓿
细胞壁
植物
生物
转录因子
基因表达
基因
作者
Jing Yang,Jiaxing Song,Yueyan Feng,Yuman Cao,Bingzhe Fu,Zhiqiang Zhang,Nan Ma,Qian Li,Tianming Hu,Yafang Wang,Peizhi Yang
标识
DOI:10.1016/j.ijbiomac.2023.125501
摘要
Alfalfa is an important forage crop. Yield and quality are frequently threatened by extreme environments such as drought and salt stress. As a component of the cell wall, lignin plays an important role in the abiotic stress response, the mechanisms of which have not been well clarified. In this study, we combined physiological, transcriptional, and metabolic analyses to reveal the changes in lignin content in alfalfa under mannitol-induced osmotic stress. Osmotic stress enhanced lignin accumulation by increasing G and S units, which was associated with increases in enzyme activities and decreases in 8 intermediate metabolites. Upon combined analysis of the transcriptome and metabolome, we identified five key structural genes and several coexpressed transcription factors, such as MYB and WRKY, which may play a core role in regulating lignin content and composition under osmotic stress. In addition, lignin synthesis was positively regulated by ABA but negatively regulated by ethylene under osmotic stress. These results provide new insight into the regulatory mechanism of lignin synthesis under abiotic stress.
科研通智能强力驱动
Strongly Powered by AbleSci AI