Xin Yongping, Guo Tingting, Qiao Mingqiang
School of Life Science, Shanxi University, Taiyuan 030006, PR China.
State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, PR China.
Food Res Int. 2025 May;209:116315. doi: 10.1016/j.foodres.2025.116315. Epub 2025 Mar 20.
Lactic acid bacteria (LABs) have a long history of use in food and beverages fermentation. Recently, several LABs have gained attention as starter or non-starter cultures and probiotics for making functional fermented foods, which have the potential to enhance human health. In addition, certain LABs show great potential as microbial cell factories for producing food-related chemicals. However, enhancing the outcomes of starter and non-starter cultures, exploring the complicated probiotic mechanism of LABs, and engineering strains to enhance the yields of high-value compounds for precision fermentation remains challenging due to the time-consuming and labor-intensive current genome editing tools. The clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR associated proteins (Cas) system, originally an adaptive immune system in bacteria, has revolutionized genome editing, metabolic engineering and synthetic biology. Its versatility has resulted in extensive applications across diverse organisms. The widespread distribution of CRISPR-Cas systems and the diversity of CRISPR arrays in LAB genomes highlight their potential for studying the evolution of LABs. This review discusses the current advancement of CRISPR-Cas systems in engineering LABs for food application. Moreover, it outlines future research directions aimed at harnessing CRISPR-Cas systems to advance lactic acid bacterial research and drive innovation in food science.
乳酸菌(LABs)在食品和饮料发酵中的应用历史悠久。最近,几种乳酸菌作为发酵剂或非发酵剂培养物以及用于生产功能性发酵食品的益生菌受到关注,这些功能性发酵食品具有促进人类健康的潜力。此外,某些乳酸菌作为生产食品相关化学品的微生物细胞工厂显示出巨大潜力。然而,由于当前的基因组编辑工具既耗时又费力,提高发酵剂和非发酵剂培养物的效果、探索乳酸菌复杂的益生菌机制以及改造菌株以提高精密发酵中高价值化合物的产量仍然具有挑战性。成簇规律间隔短回文重复序列(CRISPR)-CRISPR相关蛋白(Cas)系统最初是细菌中的一种适应性免疫系统,它彻底改变了基因组编辑、代谢工程和合成生物学。其多功能性已导致在各种生物体中得到广泛应用。CRISPR-Cas系统在乳酸菌基因组中的广泛分布以及CRISPR阵列的多样性突出了它们在研究乳酸菌进化方面的潜力。本综述讨论了CRISPR-Cas系统在工程化乳酸菌用于食品应用方面的当前进展。此外,它概述了未来的研究方向,旨在利用CRISPR-Cas系统推进乳酸菌研究并推动食品科学创新。
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