Bro Christoffer, Nielsen Jens
Center for Microbial Biotechnology, BioCentrum-DTU, Technical University of Denmark, Building 223, DK-2800 Kgs, Lyngby.
Metab Eng. 2004 Jul;6(3):204-11. doi: 10.1016/j.ymben.2003.11.005.
Genome-wide or large-scale methodologies employed in functional genomics such as DNA sequencing, transcription profiling, proteomics, and metabolite profiling have become important tools in many metabolic engineering strategies. These techniques allow the identification of genetic differences and insight into their cellular effects. In the field of inverse metabolic engineering mapping of differences between strains with different degree of a certain desired phenotype and subsequent identification of factors conferring that phenotype are an essential part. Therefore, the tools of functional genomics in particular have the potential to promote and expand inverse metabolic engineering. Here, we review the use of functional genomics methods in inverse metabolic engineering, examples are presented, and we discuss the identification of targets for metabolic engineering with low fold changes using these techniques.
功能基因组学中使用的全基因组或大规模方法,如DNA测序、转录谱分析、蛋白质组学和代谢物谱分析,已成为许多代谢工程策略中的重要工具。这些技术能够识别遗传差异并深入了解其细胞效应。在逆向代谢工程领域,绘制具有不同程度特定期望表型的菌株之间的差异图谱,并随后鉴定赋予该表型的因素是至关重要的一部分。因此,功能基因组学工具尤其具有促进和扩展逆向代谢工程的潜力。在此,我们综述了功能基因组学方法在逆向代谢工程中的应用,给出了实例,并讨论了使用这些技术鉴定低倍数变化的代谢工程靶点。