茉莉酸
生物合成
生物
生物化学
山茶花
山茶
磷酸盐
山茶科
儿茶素
茉莉酸甲酯
酶
基因
植物
多酚
拟南芥
抗氧化剂
突变体
作者
Linying Li,Xueying Zhang,Da Li,Hui Su,Yuqing He,Zelong Xu,Yao Zhao,Yiyi Hong,Qingsheng Li,Ping Xu,Gaojie Hong
摘要
Catechins constitute abundant metabolites in tea and have potential health benefits and high economic value. Intensive study has shown that the biosynthesis of tea catechins is regulated by environmental factors and hormonal signals. However, little is known about the coordination of phosphate (Pi) signaling and the jasmonic acid (JA) pathway on biosynthesis of tea catechins. We found that Pi deficiency caused changes in the content of catechins and modulated the expression levels of genes involved in catechin biosynthesis. Herein, we identified two transcription factors of phosphate signaling in tea, named CsPHR1 and CsPHR2, respectively. Both regulated catechin biosynthesis by activating the transcription of
科研通智能强力驱动
Strongly Powered by AbleSci AI