类黄酮生物合成
查尔酮异构酶
生物
类黄酮
基因
基因家族
转录因子
查尔酮
植物
遗传学
生物化学
查尔酮合酶
转录组
基因表达
化学
立体化学
抗氧化剂
作者
Suhang Yu,Jiyuan Li,Ting Peng,Sui Ni,Yi Feng,Qiushi Wang,Minyan Wang,Xian Chu,Zhengqi Fan,Xinlei Li,Hengfu Yin,Wanchuan Ge,Weixin Liu
出处
期刊:Biomolecules
[MDPI AG]
日期:2022-12-26
卷期号:13 (1): 41-41
被引量:11
摘要
Camellia nitidissima is a woody plant with high ornamental value, and its golden-yellow flowers are rich in a variety of bioactive substances, especially flavonoids, that are beneficial to human health. Chalcone isomerases (CHIs) are key enzymes in the flavonoid biosynthesis pathway; however, there is a scarcity of information regarding the CHI family genes of C. nitidissima. In this study, seven CHI genes of C. nitidissima were identified and divided into three subfamilies by phylogenetic analysis. The results of multiple sequence alignment revealed that, unlike CnCHI1/5/6/7, CnCHI2/3/4 are bona fide CHIs that contain all the active site and critical catalytic residues. Analysis of the expression patterns of CnCHIs and the total flavonoid content of the flowers at different developmental stages revealed that CnCHI4 might play an essential role in the flavonoid biosynthesis pathway of C. nitidissima. CnCHI4 overexpression significantly increased flavonoid production in Nicotiana tabacum and C. nitidissima. The results of the dual-luciferase reporter assay and yeast one-hybrid system revealed that CnMYB7 was the key transcription factor that governed the transcription of CnCHI4. The study provides a comprehensive understanding of the CHI family genes of C. nitidissima and performed a preliminary analysis of their functions and regulatory mechanisms.
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