College of Tropical Crops, Hainan University, Haikou, China.
Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm 14476, Germany.
Curr Opin Plant Biol. 2022 Jun;67:102201. doi: 10.1016/j.pbi.2022.102201. Epub 2022 Mar 26.
Plants produce a large number of diverse metabolites when they grow and develop as well as when they respond to the changing external environment. These are an important source of human nutrition and medicine. In this review we emphasized the major issues of the primary-specialized metabolic interface in plant metabolism, described the metabolic flow from primary to specialized metabolism, and the conservation and diversity of primary and specialized metabolites. At the same time, we summarized the regulatory mechanisms underpinning the dynamic balance primary and specialized metabolism based on multi-omics integration analysis, as well as the natural variation of primary and specialized metabolic pathways and genes during the plant evolution. Moreover, the discovery and optimization of the synthesis and regulation elements of various primary to specialized metabolic flows provide the possibility for precise modification and personalized customization of metabolic pathways, which will greatly promote the development of synthetic biology.
植物在生长发育以及对外界环境变化作出响应时会产生大量多样的代谢物。这些是人类营养和药物的重要来源。在本综述中,我们强调了植物代谢中初生代谢与特化代谢界面的主要问题,描述了从初生代谢到特化代谢的代谢流,以及初生代谢物和特化代谢物的保守性和多样性。同时,我们总结了基于多组学整合分析的初生代谢和特化代谢动态平衡的调控机制,以及在植物进化过程中初生和特化代谢途径和基因的自然变异。此外,各种初生到特化代谢流的合成和调控元件的发现和优化为代谢途径的精确修饰和个性化定制提供了可能,这将极大地促进合成生物学的发展。