Sagun Julius Ver, Yadav Umesh Prasad, Alonso Ana Paula
Department of Biological Sciences, BioDiscovery Institute, University of North Texas, Denton, TX, United States.
Front Plant Sci. 2023 Jan 26;14:1116894. doi: 10.3389/fpls.2023.1116894. eCollection 2023.
The world's population is projected to increase by two billion by 2050, resulting in food and energy insecurity. Oilseed crops have been identified as key to address these challenges: they produce and store lipids in the seeds as triacylglycerols that can serve as a source of food/feed, renewable fuels, and other industrially-relevant chemicals. Therefore, improving seed oil content and composition has generated immense interest. Research efforts aiming to unravel the regulatory pathways involved in fatty acid synthesis and to identify targets for metabolic engineering have made tremendous progress. This review provides a summary of the current knowledge of oil metabolism and discusses how photochemical activity and unconventional pathways can contribute to high carbon conversion efficiency in seeds. It also highlights the importance of C-metabolic flux analysis as a tool to gain insights on the pathways that regulate oil biosynthesis in seeds. Finally, a list of key genes and regulators that have been recently targeted to enhance seed oil production are reviewed and additional possible targets in the metabolic pathways are proposed to achieve desirable oil content and quality.
预计到2050年,世界人口将增加20亿,这将导致粮食和能源不安全。油籽作物已被视为应对这些挑战的关键:它们在种子中以三酰甘油的形式生产和储存脂质,这些脂质可作为食物/饲料、可再生燃料及其他工业相关化学品的来源。因此,提高种子油含量和成分已引起了极大关注。旨在揭示脂肪酸合成所涉及的调控途径并确定代谢工程靶点的研究工作取得了巨大进展。本综述总结了当前关于油脂代谢的知识,并讨论了光化学活性和非常规途径如何有助于提高种子中的碳转化效率。它还强调了碳代谢通量分析作为一种工具对于深入了解调控种子油脂生物合成途径的重要性。最后,回顾了最近为提高种子油产量而靶向的关键基因和调控因子列表,并提出了代谢途径中的其他可能靶点,以实现理想的油含量和质量。