Wang Pandi, Xiong Xiaojuan, Zhang Xiaobo, Wu Gang, Liu Fang
Key Laboratory of Biology and Genetics Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs, Oil Crops Research Institute, Chinese Academy of Agricultural Sciences, Wuhan, China.
State Key Laboratory of Crop Breeding Technology Innovation and Integration, Life Science and Technology Center, China National Seed Group Co., Ltd., Wuhan, China.
Front Plant Sci. 2022 May 11;13:899076. doi: 10.3389/fpls.2022.899076. eCollection 2022.
Erucic acid (C22:1, ω-9, EA) is a very-long-chain monounsaturated fatty acid (FA) that is an important oleochemical product with a wide range of uses in metallurgy, machinery, rubber, the chemical industry, and other fields because of its hydrophobicity and water resistance. EA is not easily digested and absorbed in the human body, and high-EA rapeseed (HEAR) oil often contains glucosinolates. Both glucosinolates and EA are detrimental to health and can lead to disease, which has resulted in strict guidelines by regulatory bodies on maximum EA contents in oils. Increasingly, researchers have attempted to enhance the EA content in Brassicaceae oilseeds to serve industrial applications while conversely reducing the EA content to ensure food safety. For the production of both LEAR and HEAR, biotechnology is likely to play a fundamental role. Elucidating the metabolic pathways of EA can help inform the improvement of Brassicaceae oilseeds through transgenic technology. In this paper, we introduce the industrial applications of HEAR oil and health benefits of low-EA rapeseed (LEAR) oil first, following which we review the biosynthetic pathways of EA, introduce the EA resources from plants, and focus on research related to the genetic engineering of EA in Brassicaceae oilseeds. In addition, the effects of the environment on EA production are addressed, and the safe cultivation of HEAR and LEAR is discussed. This paper supports further research into improving FAs in Brassicaceae oilseeds through transgenic technologies and molecular breeding techniques, thereby advancing the commercialization of transgenic products for better application in various fields.
芥酸(C22:1,ω-9,EA)是一种超长链单不饱和脂肪酸(FA),是一种重要的油脂化工产品,因其疏水性和防水性而在冶金、机械、橡胶、化工等领域有广泛用途。EA在人体中不易消化和吸收,高芥酸菜籽(HEAR)油通常含有硫代葡萄糖苷。硫代葡萄糖苷和EA都对健康有害,会导致疾病,这使得监管机构对油中EA的最大含量制定了严格的指导方针。越来越多的研究人员试图提高十字花科油料种子中的EA含量以用于工业应用,同时降低EA含量以确保食品安全。对于低芥酸菜籽(LEAR)和高芥酸菜籽的生产,生物技术可能会发挥重要作用。阐明EA的代谢途径有助于通过转基因技术改进十字花科油料种子。在本文中,我们首先介绍了高芥酸菜籽油的工业应用和低芥酸菜籽(LEAR)油的健康益处,随后我们综述了EA的生物合成途径,介绍了植物中的EA资源,并重点关注十字花科油料种子中EA的基因工程相关研究。此外,还讨论了环境对EA生产的影响以及高芥酸菜籽和低芥酸菜籽的安全种植。本文支持通过转基因技术和分子育种技术进一步研究改进十字花科油料种子中的脂肪酸,从而推动转基因产品的商业化,以便在各个领域更好地应用。