Recent progress and perspective of peroxisome-targeted bioengineering in plant chassis
作者:Xinyu Wang, Shuyan Song, Ci Kong, Qianwen Deng, Xiaowen Wang, Ronghui Pan, Huaxin Dai · 发表于:Crop Design · 年份:2025 · DOI:10.1016/j.cropd.2025.100128 · 被引用次数:1 · 研究领域:Peroxisome Proliferator-Activated Receptors、Lipid metabolism and biosynthesis、Photosynthetic Processes and Mechanisms
In plant chassis, peroxisomes, as key hubs of metabolism, play important roles in fatty acid β-oxidation, reactive oxygen species (ROS) metabolism and photorespiration. Fatty acid β-oxidation breaks down fatty acids through a multi-step enzymatic reaction, providing precursors for energy metabolism and phytohormone synthesis; ROS metabolism maintains redox balance through the antioxidant system and enhances plant resilience; and photorespiration relies on the synergistic action of peroxisomes with other organelles to optimize the efficiency of carbon and nitrogen utilization. Notably, peroxisomes possess a clear and simple targeting signaling system and a flexible abundance regulation mechanism, which provide unique advantages for their metabolic engineering. Recent studies have achieved effective control of fatty acid accumulation and promoted crop lipid yield by modulating the activity and transport mechanism of specific enzymes within the peroxisome. In addition, by reconfiguring the metabolic pathways in peroxisomes, the researchers successfully optimized the photorespiratory pathway, which significantly improved the energy utilization efficiency and enhanced the stress tolerance of crops. Meanwhile, the modification of ROS metabolism also showed the potential to enhance the antioxidant capacity and environmental adaptability of plants. These advances not only deepen our understanding of the peroxisome function, but also provide new strategies and technical means for crop...