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Genetic toolkits for engineering Rhodococcus species with versatile applications

机译:具有多功能应用的工程rhodococcus种类的遗传工具包

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Rhodococcus spp. are a group of non-model gram-positive bacteria with diverse catabolic activities and strong adaptive capabilities, which enable their wide application in whole-cell biocatalysis, environmental bioremediation, and lignocellulosic biomass conversion. Compared with model microorganisms, the engineering of Rhodococcus is challenging because of the lack of universal molecular tools, high genome GC content (61% similar to 71%), and low transformation and recombination efficiencies. Nevertheless, because of the high interest in Rhodococcus species for bioproduction, various genetic elements and engineering tools have been recently developed for Rhodococcus spp., including R. opacus, R. jostii, R. ruber, and R. erythropolis, leading to the expansion of the genetic toolkits for Rhodococcus engineering. In this article, we provide a comprehensive review of the important developed genetic elements for Rhodococcus, including shuttle vectors, promoters, antibiotic markers, ribosome binding sites, and reporter genes. In addition, we also summarize gene transfer techniques and strategies to improve transformation efficiency, as well as random and precise genome editing tools available for Rhodococcus, including transposition, homologous recombination, recombineering, and CRISPR/Cas9. We conclude by discussing future trends in Rhodococcus engineering. We expect that more synthetic and systems biology tools (such as multiplex genome editing, dynamic regulation, and genome-scale metabolic models) will be adapted and optimized for Rhodococcus.
机译:rhodococcus spp。是一组非模型革兰氏阳性细菌,具有不同的分解代谢活动和强大的适应能力,可实现它们在全细胞生物分析,环境生物化和木质纤维素生物质转化中的广泛应用。与模型微生物相比,由于缺乏普遍的分子工具,高基因组GC含量(61%与71%相似)和低转化和重组效率,杜鹃花的工程挑战。尽管如此,由于对生物生产的rhodococcus物种的高兴,最近已经为rhodococcus spp开发了各种遗传元件和工程工具。,包括R. opacus,R.Jostii,R.Ruber和R. Erythopolis,导致扩张rhodocccus工程的遗传工具。在本文中,我们对Rhodococcus的重要发达的遗传元素进行了全面的审查,包括穿梭载体,启动子,抗生素标志物,核糖体结合位点和报告基因。此外,我们还总结了基因转移技术和策略以提高转化效率,以及可用于rhodococcus的随机和精确的基因组编辑工具,包括转置,同源重组,重组和CRISPR / CAS9。我们通过讨论rhodococcus工程的未来趋势来得出结论。我们预计将适用和优化更多的合成和系统生物学工具(例如多重基因组编辑,动态调节和基因组代谢模型),并针对rhodoccc来进行调整和优化。

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