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罗特氏菌的系统生物学和代谢工程在生物转化和生物合成过程中的应用。

Systems biology and metabolic engineering of Rhodococcus for bioconversion and biosynthesis processes.

机构信息

Department of Pharmacy and Biotechnology, University of Bologna, Via Irnerio 42, 40126, Bologna, Italy.

出版信息

Folia Microbiol (Praha). 2021 Oct;66(5):701-713. doi: 10.1007/s12223-021-00892-y. Epub 2021 Jul 3.

Abstract

Rhodococcus spp. strains are widespread in diverse natural and anthropized environments thanks to their high metabolic versatility, biodegradation activities, and unique adaptation capacities to several stress conditions such as the presence of toxic compounds and environmental fluctuations. Additionally, the capability of Rhodococcus spp. strains to produce high value-added products has received considerable attention, mostly in relation to lipid accumulation. In relation with this, several works carried out omic studies and genome comparative analyses to investigate the genetic and genomic basis of these anabolic capacities, frequently in association with the bioconversion of renewable resources and low-cost substrates into triacylglycerols. This review is focused on these omic analyses and the genetic and metabolic approaches used to improve the biosynthetic and bioconversion performance of Rhodococcus. In particular, this review summarizes the works that applied heterologous expression of specific genes and adaptive laboratory evolution approaches to manipulate anabolic performance. Furthermore, recent molecular toolkits for targeted genome editing as well as genome-based metabolic models are described here as novel and promising strategies for genome-scaled rational design of Rhodococcus cells for efficient biosynthetic processes application.

摘要

罗特氏菌属(Rhodococcus)菌株由于其高度的代谢多样性、生物降解活性以及对多种胁迫条件(如有毒化合物和环境波动的存在)的独特适应能力,广泛分布于各种自然和人为环境中。此外,罗特氏菌属菌株生产高附加值产品的能力引起了相当大的关注,主要与脂质积累有关。在这方面,已经进行了一些组学研究和基因组比较分析,以研究这些合成代谢能力的遗传和基因组基础,这些研究通常与可再生资源和低成本基质的生物转化为三酰基甘油有关。本综述重点介绍了这些组学分析以及用于改善罗特氏菌生物合成和生物转化性能的遗传和代谢方法。特别是,本综述总结了应用特定基因的异源表达和适应性实验室进化方法来操纵合成代谢性能的工作。此外,这里还描述了最近用于靶向基因组编辑的分子工具包以及基于基因组的代谢模型,作为用于高效生物合成过程应用的罗特氏菌细胞的基于基因组的理性设计的新型有前途的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d141/8449775/11bdda861feb/12223_2021_892_Fig1_HTML.jpg

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