Santala Suvi, Santala Ville
Faculty of Engineering and Natural Sciences, Tampere University, Hervanta Campus, Tampere 33720, Finland.
Essays Biochem. 2021 Jul 26;65(2):309-318. doi: 10.1042/EBC20200136.
Acinetobacter baylyi ADP1 is a non-pathogenic soil bacterium known for its metabolic diversity and high natural transformation and recombination efficiency. For these features, A. baylyi ADP1 has been long exploited in studying bacterial genetics and metabolism. The large pool of information generated in the fundamental studies has facilitated the development of a broad range of sophisticated and robust tools for the genome and metabolic engineering of ADP1. This mini-review outlines and describes the recent advances in ADP1 engineering and tool development, exploited in, for example, pathway and enzyme evolution, genome reduction and stabilization, and for the production of native and non-native products in both pure and rationally designed multispecies cultures. The rapidly expanding toolbox together with the unique features of A. baylyi ADP1 provide a strong base for a microbial cell factory excelling in synthetic biology applications where evolution meets rational engineering.
拜氏不动杆菌ADP1是一种非致病性土壤细菌,以其代谢多样性以及高自然转化和重组效率而闻名。基于这些特性,拜氏不动杆菌ADP1长期以来一直被用于细菌遗传学和代谢研究。基础研究中产生的大量信息推动了一系列用于ADP1基因组和代谢工程的复杂且强大工具的开发。本综述概述并描述了ADP1工程和工具开发的最新进展,这些进展应用于例如途径和酶的进化、基因组缩减和稳定,以及在纯培养和合理设计的多物种培养中生产天然和非天然产物。快速扩展的工具集以及拜氏不动杆菌ADP1的独特特性为在合成生物学应用中实现进化与理性工程相结合的卓越微生物细胞工厂奠定了坚实基础。