Xu Mengwei, Hu Jiao, Li Hongwei, Li Kunqian, Xu Delin
Department of Medical Instrumental Analysis, Zunyi Medical University, Zunyi, Guizhou, China.
Guizhou Provincial Demonstration Center of Basic Medical Experimental Teaching, Zunyi Medical University, Zunyi, Guizhou, China.
PeerJ. 2024 Mar 7;12:e17052. doi: 10.7717/peerj.17052. eCollection 2024.
Tuber plants are of great significance in the world as human food crops. Polysaccharides, important metabolites in tuber plants, also serve as a source of innovative drugs with significant pharmacological effects. These drugs are particularly known for their immunomodulation and antitumor properties. To fully exploit the potential value of tuber plant polysaccharides and establish a synthetic system for their targeted synthesis, it is crucial to dissect their metabolic processes and genetic regulatory mechanisms. In this article, we provide a comprehensive summary of the basic pathways involved in the synthesis of various types of tuber plant polysaccharides. We also outline the key research progress that has been made in this area in recent years. We classify the main types and functions of tuber plant polysaccharides and analyze the biosynthetic processes and genetic regulation mechanisms of key enzymes involved in the metabolic pathways of starch, cellulose, pectin, and fructan in tuber plants. We have identified hexokinase and glycosyltransferase as the key enzymes involved in the polysaccharide synthesis process. By elucidating the synthesis pathway of polysaccharides in tuber plants and understanding the underlying mechanism of action of key enzymes in the metabolic pathway, we can provide a theoretical framework for enhancing the yield of polysaccharides and other metabolites in plant culture cells. This will ultimately lead to increased production efficiency.
块茎植物作为人类粮食作物在世界上具有重要意义。多糖是块茎植物中的重要代谢产物,也是具有显著药理作用的创新药物来源。这些药物尤其以其免疫调节和抗肿瘤特性而闻名。为了充分挖掘块茎植物多糖的潜在价值并建立其靶向合成体系,剖析其代谢过程和遗传调控机制至关重要。在本文中,我们全面总结了各类块茎植物多糖合成所涉及的基本途径。我们还概述了近年来该领域取得的关键研究进展。我们对块茎植物多糖的主要类型和功能进行了分类,并分析了块茎植物中淀粉、纤维素、果胶和果聚糖代谢途径中关键酶的生物合成过程和遗传调控机制。我们已确定己糖激酶和糖基转移酶是多糖合成过程中的关键酶。通过阐明块茎植物中多糖的合成途径并了解代谢途径中关键酶的潜在作用机制,我们可为提高植物培养细胞中多糖及其他代谢产物的产量提供理论框架。这最终将提高生产效率。