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蓝藻烷烃生物合成的研究进展。

Insights into cyanobacterial alkane biosynthesis.

机构信息

Microbial Engineering Group, International Centre for Genetic Engineering and Biotechnology, New Delhi 110067 India.

DBT-ICGEB Centre for Advanced Bioenergy Research, International Centre for Genetic Engineering and Biotechnology, New Delhi 110067, India.

出版信息

J Ind Microbiol Biotechnol. 2022 Apr 14;49(2). doi: 10.1093/jimb/kuab075.

Abstract

Alkanes are high-energy molecules that are compatible with enduring liquid fuel infrastructures, which make them highly suitable for being next-generation biofuels. Though biological production of alkanes has been reported in various microorganisms, the reports citing photosynthetic cyanobacteria as natural producers have been the most consistent for the long-chain alkanes and alkenes (C15-C19). However, the production of alkane in cyanobacteria is low, leading to its extraction being uneconomical for commercial purposes. In order to make alkane production economically feasible from cyanobacteria, the titre and yield need to be increased by several orders of magnitude. In the recent past, efforts have been made to enhance alkane production, although with a little gain in yield, leaving space for much improvement. Genetic manipulation in cyanobacteria is considered challenging, but recent advancements in genetic engineering tools may assist in manipulating the genome in order to enhance alkane production. Further, advancement in a basic understanding of metabolic pathways and gene functioning will guide future research for harvesting the potential of these tiny photosynthetically efficient factories. In this review, our focus would be to highlight the current knowledge available on cyanobacterial alkane production, and the potential aspects of developing cyanobacterium as an economical source of biofuel. Further insights into different metabolic pathways and hosts explored so far, and possible challenges in scaling up the production of alkanes will also be discussed.

摘要

烷烃是高能分子,与持久的液体燃料基础设施兼容,因此非常适合作为下一代生物燃料。尽管各种微生物中都有报道称可以生物合成烷烃,但在长链烷烃和烯烃(C15-C19)方面,最一致的报道是来自光合蓝细菌的天然生产者。然而,蓝细菌中烷烃的产量很低,导致其提取在商业上不经济。为了使蓝细菌生产的烷烃在经济上可行,需要将产率和产量提高几个数量级。在最近的过去,人们已经努力提高烷烃的产量,尽管产量略有增加,但仍有很大的改进空间。蓝细菌中的遗传操作被认为具有挑战性,但最近在遗传工程工具方面的进展可能有助于操纵基因组以提高烷烃的产量。此外,对代谢途径和基因功能的基本理解的提高将指导未来的研究,以挖掘这些微小的、光合作用效率高的工厂的潜力。在这篇综述中,我们的重点将是强调蓝细菌烷烃生产的现有知识,并探讨将蓝细菌开发为经济生物燃料来源的潜在方面。此外,还将讨论迄今为止探索的不同代谢途径和宿主的深入见解,以及提高烷烃产量的可能挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/533a/9118987/5f5bfebfe4b6/kuab075fig1.jpg

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