Metabolomic responses to the mechanical wounding of Catharanthus roseus’ upper leaves

代谢组学 长春花 次生代谢 次生代谢物 代谢物 初级代谢物 生物 植物 萜类 代谢途径 生物化学 新陈代谢 化学 生物合成 生物信息学 基因
作者
Qi Chen,Yan Jin,Xiaorui Guo,Mingyuan Xu,Guanyun Wei,Xueyan Lu,Zhonghua Tang
出处
期刊:PeerJ [PeerJ]
卷期号:11: e14539-e14539 被引量:1
标识
DOI:10.7717/peerj.14539
摘要

Purpose Plant secondary metabolites are used to treat various human diseases. However, it is difficult to produce a large number of specific metabolites, which largely limits their medicinal applications. Many methods, such as drought and nutrient application, have been used to induce the biosynthetic production of secondary metabolites. Among these secondary metabolite-inducing methods, mechanical wounding maintains the composition of secondary metabolites with little potential risk. However, the effects of mechanical stress have not been fully investigated, and thus this method remains widely unused. Methods In this study, we used metabolomics to investigate the metabolites produced in the upper and lower leaves of Catharanthus roseus in response to mechanical wounding. Results In the upper leaves, 13 different secondary metabolites (three terpenoid indole alkaloids and 10 phenolic compounds) were screened using an orthogonal partial least squares discriminant analysis (OPLS-DA) score plot. The mechanical wounding of different plant parts affected the production of secondary metabolites. Specifically, when lower leaves were mechanically wounded, the upper leaves became a strong source of resources. Conversely, when upper leaves were injured, the upper leaves themselves became a resource sink. Changes in the source-sink relationship reflected a new balance between resource tradeoff and the upregulation or downregulation of certain metabolic pathways. Conclusion Our findings suggest that mechanical wounding to specific plant parts is a novel approach to increase the biosynthetic production of specific secondary metabolites. These results indicate the need for a reevaluation of production practices for secondary metabolites from select commercial plants.
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