Molecular cloning and functional verification of chalcone synthase genes from cassava (Manihot esculenta Crantz) in defense against Tetranychus cinnabarinus infestation

查尔酮合酶 生物 类黄酮生物合成 次生代谢物 次生代谢 基因 ATP合酶 拟南芥 曼尼霍特埃斯库兰塔酒店 查尔酮异构酶 异源表达 植物 生物化学 基因表达 生物合成 转录组 突变体 重组DNA
作者
Yanni Yang,Kaiwen Zheng,Limei Gao,Ying Hu,Cuixia Liu,Fei Li,Ming Liu
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:20 (4): e0321276-e0321276
标识
DOI:10.1371/journal.pone.0321276
摘要

Secondary metabolites such as flavonoids play an important role in protecting plants from biological agents such as fungi, pathogens, bacteria and pests. Chalcone synthase (CHS) is the first enzyme in the plant flavonoid biosynthesis pathway, and is also a key enzyme and rate-limiting enzyme in the secondary metabolite production pathway, which has very important physiological significance in plants. Despite extensive characterization in various plants, the functions of CHS in cassava remain unknown. Here, MeCH S1, MeCHS 3 and MeCH S5 genes from Manihot esculenta Crantz were isolated and functionally analyzed. The results showed that the over-expression of the three MeCHS s were beneficial to control the further reproduction of Tetranychus cinnabarinus . At the same time, the transfer of MeCH S1, MeCHS 3 and MeCH S5 genes can promote the synthesis of more secondary metabolites in Arabidopsis thaliana . Heterologous expression in A. thaliana indicated the presence of different expression levels of the three MeCHS s in defense against T. cinnabarinus infestation. Correlation analysis showed that the expression of MeCHS s were positively correlated with the synthesis of secondary metabolites, and negatively correlated with survival rate of T. cinnabarinus . These results indicate that the different expression levels of MeCHS genes lead to the difference in the synthesis of secondary metabolites, and thus the resistance of A. thaliana to T. cinnabarinus is also different.
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