Yuan Lixia, Li Runzhi
College of Biological Science and Technology, Jinzhong University, Jinzhong, China.
Institute of Molecular Agriculture and Bioenergy, Shanxi Agricultural University, Taigu, China.
Front Plant Sci. 2020 Feb 12;11:11. doi: 10.3389/fpls.2020.00011. eCollection 2020.
(L.) Crantz is an important Brassicaceae oil crop with a number of excellent agronomic traits including low water and fertilizer input, strong adaptation and resistance. Furthermore, its short life cycle and easy genetic transformation, combined with available data of genome and other "-omics" have enabled camelina as a model oil plant to study lipid metabolism regulation and genetic improvement. Particularly, camelina is capable of rapid metabolic engineering to synthesize and accumulate high levels of unusual fatty acids and modified oils in seeds, which are more stable and environmentally friendly. Such engineered camelina oils have been increasingly used as the super resource for edible oil, health-promoting food and medicine, biofuel oil and high-valued chemical production. In this review, we mainly highlight the latest advance in metabolic engineering towards the predictive manipulation of metabolism for commercial production of desirable bio-based products using camelina as an ideal platform. Moreover, we deeply analysis camelina seed metabolic engineering strategy and its promising achievements by describing the metabolic assembly of biosynthesis pathways for acetyl glycerides, hydroxylated fatty acids, medium-chain fatty acids, ω-3 long-chain polyunsaturated fatty acids, palmitoleic acid (ω-7) and other high-value oils. Future prospects are discussed, with a focus on the cutting-edge techniques in camelina such as genome editing application, fine directed manipulation of metabolism and future outlook for camelina industry development.
荠蓝是一种重要的十字花科油料作物,具有许多优良农艺性状,包括低水肥投入、强适应性和抗性。此外,其生命周期短且易于遗传转化,再加上基因组和其他“组学”的可用数据,使荠蓝成为研究脂质代谢调控和遗传改良的模式油料植物。特别是,荠蓝能够进行快速代谢工程,在种子中合成并积累高水平的非常规脂肪酸和改性油脂,这些油脂更稳定且对环境友好。这种工程化荠蓝油已越来越多地用作食用油、健康促进食品和药品、生物燃料油以及高价值化学品生产的优质资源。在本综述中,我们主要强调了以荠蓝为理想平台,在代谢工程方面取得的最新进展,旨在对代谢进行预测性操纵,以商业生产所需的生物基产品。此外,我们通过描述乙酰甘油酯、羟基化脂肪酸、中链脂肪酸、ω-3长链多不饱和脂肪酸、棕榈油酸(ω-7)和其他高价值油脂的生物合成途径的代谢组装,深入分析了荠蓝种子代谢工程策略及其取得的有前景的成果。我们还讨论了未来前景,重点关注荠蓝中的前沿技术,如基因组编辑应用、代谢的精细定向操纵以及荠蓝产业发展的未来展望。