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综述:合成生物学时代特殊脂质的代谢工程

Review: Metabolic engineering of unusual lipids in the synthetic biology era.

作者信息

Aznar-Moreno Jose A, Durrett Timothy P

机构信息

Department of Biochemistry and Molecular Biophysics, Kansas State University, Manhattan, KS 66506, USA.

Department of Biochemistry and Molecular Biophysics, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Plant Sci. 2017 Oct;263:126-131. doi: 10.1016/j.plantsci.2017.07.007. Epub 2017 Jul 13.

Abstract

The plant kingdom produces a variety of fatty acid structures, many of which possess functional groups useful for industrial applications. The species that produce these unusual fatty acids are often not suitable for large scale commercial production. The ability to create genetically modified plants, together with emerging synthetic biology approaches, offers the potential to develop alternative oil seed crops capable of producing high levels of modified lipids. In some cases, by combining genes from different species, non-natural lipids with a targeted structure can be conceived. However, the expression of the biosynthetic enzymes responsible for the synthesis of unusual fatty acids typically results in poor accumulation of the desired product. An improved understanding of fatty acid flux from synthesis to storage revealed that specialized enzymes are needed to traffic unusual fatty acids. Co-expression of some of these additional enzymes has incrementally increased the levels of unusual fatty acids in transgenic seeds. Understanding how the introduced pathways interact with the endogenous pathways will be important for further enhancing the levels of unusual fatty acids in transgenic plants. Eliminating endogenous activities, as well as segregating the different pathways, represent strategies to further increase accumulation of unusual lipids.

摘要

植物王国产生了各种各样的脂肪酸结构,其中许多具有可用于工业应用的官能团。产生这些特殊脂肪酸的物种通常不适合大规模商业生产。创造转基因植物的能力,以及新兴的合成生物学方法,为开发能够产生高水平改性脂质的替代油料作物提供了潜力。在某些情况下,通过组合来自不同物种的基因,可以设想出具有目标结构的非天然脂质。然而,负责合成特殊脂肪酸的生物合成酶的表达通常会导致所需产物的积累不佳。对脂肪酸从合成到储存的通量有了更深入的了解后发现,需要专门的酶来运输特殊脂肪酸。共表达其中一些额外的酶已逐渐提高了转基因种子中特殊脂肪酸的水平。了解引入的途径如何与内源性途径相互作用对于进一步提高转基因植物中特殊脂肪酸的水平至关重要。消除内源性活性以及分离不同的途径是进一步增加特殊脂质积累的策略。

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