Niu Changcheng, Wu Hao, Wang Xiaona, Hu Liying, Han Yanping, Qiao Jianjun
School of Chemical Engineering and Technology, Tianjin University, Tianjin, China.
Precision Nutrition and Health Research and Development Center, Zhejiang Research Institute of Tianjin University (Shaoxing), Shaoxing, China.
Front Microbiol. 2025 Jun 24;16:1578813. doi: 10.3389/fmicb.2025.1578813. eCollection 2025.
Natural transformation is a process in which bacteria uptake exogenous DNA from the environment during a transient physiological state called competence. The DNA can either autonomously replicate or integrate into the bacterial chromosome through homologous recombination. Natural transformation has been studied for nearly a century. Recently, the rapid development of synthetic biology has led to the widespread use of natural transformation as a gene-editing tool for modifying industrial strains. A better understanding of the basic principles of natural transformation can enhance its biotechnological applications. This article provides a detailed overview of the natural transformation process, from initiation to completion. It focuses on the molecular mechanisms involved in natural transformation in both Gram-positive and Gram-negative bacteria. The article also analyzes factors that influence the activation of natural transformation, detailing the regulatory processes and signaling pathways involved. It further explores the potential biological functions of natural transformation. Finally, it discusses various applications of natural transformation in gene editing, offering insights into its potential for modifying industrial strains.
自然转化是一个过程,在此过程中细菌在一种称为感受态的短暂生理状态下从环境中摄取外源DNA。该DNA既可以自主复制,也可以通过同源重组整合到细菌染色体中。自然转化已经被研究了近一个世纪。最近,合成生物学的快速发展导致自然转化作为一种用于改造工业菌株的基因编辑工具被广泛使用。更好地理解自然转化的基本原理可以增强其生物技术应用。本文详细概述了自然转化过程,从起始到完成。它聚焦于革兰氏阳性菌和革兰氏阴性菌中自然转化所涉及的分子机制。文章还分析了影响自然转化激活的因素,详述了所涉及的调控过程和信号通路。它进一步探索了自然转化的潜在生物学功能。最后,它讨论了自然转化在基因编辑中的各种应用,深入探讨了其改造工业菌株的潜力。