Laboratory of Biotransformation and Biocatalysis, School of Tobacco Science and Engineering, Zhengzhou University of Light Industry, Zhengzhou, Henan 450000, People's Republic of China.
Technology Center, China Tobacco Henan Industrial Co., Ltd. Zhengzhou, Henan 450000, People's Republic of China.
J Ind Microbiol Biotechnol. 2023 Feb 17;50(1). doi: 10.1093/jimb/kuac023.
Adaptive laboratory evolution (ALE) is a technique for the selection of strains with better phenotypes by long-term culture under a specific selection pressure or growth environment. Because ALE does not require detailed knowledge of a variety of complex and interactive metabolic networks, and only needs to simulate natural environmental conditions in the laboratory to design a selection pressure, it has the advantages of broad adaptability, strong practicability, and more convenient transformation of strains. In addition, ALE provides a powerful method for studying the evolutionary forces that change the phenotype, performance, and stability of strains, resulting in more productive industrial strains with beneficial mutations. In recent years, ALE has been widely used in the activation of specific microbial metabolic pathways and phenotypic optimization, the efficient utilization of specific substrates, the optimization of tolerance to toxic substance, and the biosynthesis of target products, which is more conducive to the production of industrial strains with excellent phenotypic characteristics. In this paper, typical examples of ALE applications in the development of industrial strains and the research progress of this technology are reviewed, followed by a discussion of its development prospects.
适应性实验室进化(ALE)是一种通过在特定选择压力或生长环境下进行长期培养来选择具有更好表型的菌株的技术。由于 ALE 不需要详细了解各种复杂且相互作用的代谢网络,并且只需要在实验室中模拟自然环境条件来设计选择压力,因此它具有广泛的适应性、较强的实用性和更方便的菌株转化等优点。此外,ALE 为研究改变菌株表型、性能和稳定性的进化力量提供了有力的方法,从而产生了具有有益突变的更具生产力的工业菌株。近年来,ALE 已广泛应用于特定微生物代谢途径的激活和表型优化、特定底物的高效利用、对有毒物质的耐受性优化以及目标产物的生物合成等方面,更有利于生产具有优异表型特征的工业菌株。本文综述了 ALE 在工业菌株开发中的典型应用实例和该技术的研究进展,并对其发展前景进行了讨论。