Tong Chaobo, Ding Yiran, Cheng Xin, Liu Lijiang, Liu Xinmin, Zhang Yuanyuan, Xia Yutian, Li Maoteng, Liu Shengyi
Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, the Key Laboratory of Biology and Genetic Improvement of Oil Crops, the Ministry of Agriculture and Rural Affairs, Wuhan 430062, China.
Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Plant Physiol. 2025 Sep 1;199(1). doi: 10.1093/plphys/kiaf358.
Plant oil production is crucial for meeting the global demand for vegetable oils providing essential fatty acids and energy and for various industry uses. Plant oil biosynthesis is a complex biological process. Understanding the process is essential for improving oil crop productivity and nutritional quality. To target genetic improvement strategies of oil content, this review attempts to provide a broad view of oil biosynthesis in terms of the oil biosynthesis chain and was thus arranged into four sections: the code/control center of oil production-genetic and genomic insight into seed oil content control; the manufacturing center of oil production-oil biosynthesis and its regulation; the upstream raw material supply chains of oil production-carbon source, energy, and reductants; and the progresses, challenges, and strategies-oil content improvement by conventional and biotechnological breeding in the past and future. Within these sections, we highlight major-effect quantitative trait loci of oil content and the WRINKLED1- and SEEDSTICK-centered regulatory networks of oil biosynthesis and then revisit/update the significance of both photosynthetic and maternal effect on oil content and the central metabolic pathways and related bypasses in oil accumulation. Strategies for further improvement of oil content are discussed toward constructing integrated frameworks for increasing oil productivity. Overall, with this review we aim to consolidate the recent progress regarding oil biosynthesis in crops and provide insights into future research and practical applications to crop oil production.
植物油生产对于满足全球对提供必需脂肪酸和能量的植物油的需求以及各种工业用途至关重要。植物油生物合成是一个复杂的生物学过程。了解这一过程对于提高油料作物的生产力和营养品质至关重要。为了针对含油量的遗传改良策略,本综述试图从油脂生物合成链的角度对油脂生物合成进行全面概述,因此分为四个部分:油脂生产的编码/控制中心——对种子油含量控制的遗传和基因组洞察;油脂生产的制造中心——油脂生物合成及其调控;油脂生产的上游原材料供应链——碳源、能量和还原剂;以及进展、挑战和策略——过去和未来通过传统和生物技术育种提高含油量。在这些部分中,我们重点介绍了含油量的主效数量性状位点以及以WRINKLED1和SEEDSTICK为中心的油脂生物合成调控网络,然后重新审视/更新光合作用和母体效应对含油量的重要性以及油脂积累中的中心代谢途径和相关旁路。讨论了进一步提高含油量的策略,以构建提高油脂生产力的综合框架。总体而言,通过本综述,我们旨在巩固作物油脂生物合成的最新进展,并为未来作物油脂生产的研究和实际应用提供见解。