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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Enhancement of lipid accumulation in microalgae by metabolic engineering
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Enhancement of lipid accumulation in microalgae by metabolic engineering

机译:代谢工程提高微藻脂肪脂肪

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摘要

Microalgal lipids have drawn great attention as a promising sustainable resource for biodiesel or food supplement production. The development of high-performance strains of microalgae by metabolic engineering is invaluable for increasing the quantity or quality of desired lipids. The synthesis routes of lipids used as biodiesel in microalgae are based on fatty acid synthase (FAS) and triacylglycerols (TAG) biosynthesis pathway. Polyunsaturated fatty acids (PUFAs), including omega-6 and omega-3 fatty acids, are essential nutrients for humans. Notably, microalgae possess two distinct pathways for polyunsaturated fatty acids (PUFAs) biosynthesis, including the desaturase/elongase pathway and the polyketide synthase (PKS) pathway. Thus, it is necessary to identify which biosynthetic pathways are responsible for PUFA synthesis in particular microalgae species. In recent years, various key enzymes and functional domains involved in fatty acid and TAG biosynthesis pathway were identified and potentially regulated by genetic engineering approaches to elevate specific lipids content. In addition, other studies have reported the implementation of strategies to increase lipid accumulation based on increasing acetyl-CoA/NADPH supply, enhancing photosynthetic efficiency, or blocking competing pathways. Furthermore, other efforts have used transcription factor engineering to simultaneously regulate multiple genes related to lipid accumulation. This review summarizes recent research about a variety of microalgae lipid biosynthesis pathways, and discusses multiple gene manipulation strategies that have been employed for specific lipid overproduction in industrial microalgae.
机译:微藻脂质被认为是生物柴油或食品补充生产的有希望的可持续资源。通过代谢工程开发微藻的高性能菌株对于增加所需脂质的数量或质量而言是非常宝贵的。用作微藻中使用的脂质的合成途径基于脂肪酸合成酶(FAS)和三酰基甘油(标签)生物合成途径。多不饱和脂肪酸(PUFA),包括ω-6和ω-3脂肪酸,是人类的必需营养素。值得注意的是,微藻具有两种不同的多不饱和脂肪酸(PUFA)生物合成的途径,包括去饱和酶/连续酶途径和聚酮合酶(PKS)途径。因此,有必要鉴定哪种生物合成途径对特定微藻物种的PUFA合成负责。近年来,通过基因工程方法鉴定脂肪酸和标签生物合成途径中涉及脂肪酸和标签生物合成途径的各种关键酶和功能结构域,以提高特异性脂质含量。此外,其他研究报告说,基于增加乙酰-Co / NADPH供应,增强光合效率或阻塞竞争途径,实施策略以增加脂质积累。此外,其他努力已经使用转录因子工程来同时调节与脂质积累有关的多种基因。本综述总结了最近关于各种微藻脂肪生物合成途径的研究,并讨论了在工业微藻的特异性脂质过度生产中使用的多种基因操作策略。

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