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通过遗传工程对微藻叶绿体进行操作,以生物技术利用为目标,将其作为绿色生物工厂。

Manipulation of the microalgal chloroplast by genetic engineering for biotechnological utilization as a green biofactory.

机构信息

Department of Applied Research, National Marine Biodiversity Institute of Korea, Jangsan-ro 101-75, Seocheon, Chungcheongnamdo, 33662, Republic of Korea.

Department of Genetic Resources Research, National Marine Biodiversity Institute of Korea, Jangsan-ro 101-75, Seocheon, Chungcheongnamdo, 33662, Republic of Korea.

出版信息

World J Microbiol Biotechnol. 2018 Nov 26;34(12):183. doi: 10.1007/s11274-018-2567-8.

Abstract

The chloroplast is an essential organelle in microalgae for conducting photosynthesis, thus enabling the photoautotrophic growth of microalgae. In addition to photosynthesis, the chloroplast is capable of various biochemical processes for the synthesis of proteins, lipids, carbohydrates, and terpenoids. Due to these attractive characteristics, there has been increasing interest in the biotechnological utilization of microalgal chloroplast as a sustainable alternative to the conventional production platforms used in industrial biotechnology. Since the first demonstration of microalgal chloroplast transformation, significant development has occurred over recent decades in the manipulation of microalgal chloroplasts through genetic engineering. In the present review, we describe the advantages of the microalgal chloroplast as a production platform for various bioproducts, including recombinant proteins and high-value metabolites, features of chloroplast genetic systems, and the development of transformation methods, which represent important factors for gene expression in the chloroplast. Furthermore, we address the expression of various recombinant proteins in the microalgal chloroplast through genetic engineering, including reporters, biopharmaceutical proteins, and industrial enzymes. Finally, we present many efforts and achievements in the production of high-value metabolites in the microalgal chloroplast through metabolic engineering. Based on these efforts and advances, the microalgal chloroplast represents an economically viable and sustainable platform for biotechnological applications in the near future.

摘要

叶绿体是微藻进行光合作用的重要细胞器,从而使微藻能够进行光合作用。除了光合作用,叶绿体还能够进行各种生化过程,用于合成蛋白质、脂质、碳水化合物和萜类化合物。由于这些有吸引力的特性,人们对利用微藻叶绿体进行生物技术越来越感兴趣,将其作为工业生物技术中传统生产平台的可持续替代品。自首次证明微藻叶绿体转化以来,在通过遗传工程操纵微藻叶绿体方面,近几十年来取得了重大进展。在本综述中,我们描述了微藻叶绿体作为各种生物制品(包括重组蛋白和高价值代谢物)生产平台的优势,包括叶绿体遗传系统的特征和转化方法的发展,这些都是叶绿体中基因表达的重要因素。此外,我们还探讨了通过遗传工程在微藻叶绿体中表达各种重组蛋白,包括报告蛋白、生物制药蛋白和工业酶。最后,我们介绍了通过代谢工程在微藻叶绿体中生产高价值代谢物的许多努力和成就。基于这些努力和进展,微藻叶绿体在不久的将来代表了一种经济可行且可持续的生物技术应用平台。

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