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In the fast lane: Large-scale bacterial genome engineering

机译:快速发展:大规模细菌基因组工程

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摘要

The last few years have witnessed rapid progress in bacterial genome engineering. The long-established, standard ways of DNA synthesis, modification, transfer into living cells, and incorporation into genomes have given way to more effective, large-scale, robust genome modification protocols. Expansion of these engineering capabilities is due to several factors. Key advances include: (i) progress in oligonucleotide synthesis and in vitro and in vivo assembly methods, (ii) optimization of recombineering techniques, (iii) introduction of parallel, large-scale, combinatorial, and automated genome modification procedures, and (iv) rapid identification of the modifications by barcode-based analysis and sequencing. Combination of the brute force of these techniques with sophisticated bioinformatic design and modeling opens up new avenues for the analysis of gene functions and cellular network interactions, but also in engineering more effective producer strains. This review presents a summary of recent technological advances in bacterial genome engineering. (C) 2012 Elsevier B.V. All rights reserved.
机译:最近几年见证了细菌基因组工程的快速发展。 DNA合成,修饰,转移到活细胞中以及整合到基因组中的悠久标准方法已经让位于更有效,大规模,健壮的基因组修饰方案。这些工程能力的扩展归因于几个因素。主要进展包括:(i)寡核苷酸合成以及体外和体内组装方法的进展;(ii)重组技术的优化;(iii)引入平行,大规模,组合和自动化的基因组修饰程序,以及(iv )通过基于条形码的分析和测序快速识别修饰。这些技术的蛮力与复杂的生物信息学设计和建模相结合,为分析基因功能和细胞网络相互作用,以及工程改造更有效的生产菌株开辟了新途径。这篇综述总结了细菌基因组工程技术的最新进展。 (C)2012 Elsevier B.V.保留所有权利。

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