Li Zhoukun, Zhang Lei, Ye Xianfeng, Huang Yan, Ji Yanling, Li Yuezhong, Wall Daniel, Cui Zhongli
Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Key Laboratory of Agricultural Environmental Microbiology, Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Biotechnol Adv. 2025 Sep;82:108594. doi: 10.1016/j.biotechadv.2025.108594. Epub 2025 May 8.
Microbial cell factories for the production of high-quality commercial-grade enzymes have accelerated the development of advanced bio-manufacturing approaches, which in turn are environmentally friendly and sustainable. Myxobacteria, a term commonly used to refer to a group within the Myxococcota phylum, are of great interest for their biotechnological applications due to their ability to synthesize a wide range of natural products and lytic enzymes. These traits are essential for the development of robust expression systems. However, myxobacteria have remained an underexploited resource with industrial relevance. Nevertheless, a growing number of food and industrial enzymes have been identified, highlighting myxobacteria as suitable platforms for exploring enzymes with commercial applications, including biomass conversion. Yet, the discovered lytic enzymes are just the tip of the iceberg given their large genomes and diversity across myxobacteria taxa. Despite holding much promise, challenges in genetic engineering, slow growth, and limitations in metabolic remodeling and expression strategies have limited the construction of myxobacterial cell factories. In this review, we highlight recent advances in the discovery of new myxobacterial enzymes and biomass conversion resources, focusing on their potential applications in agriculture and industry. We describe how myxobacteria and their enzymes can be identified through bioprospecting and computational approaches and summarize current biotechnological applications and synthetic biology strategies for bio-manufacturing. Finally, we discuss the promising potential of myxobacteria as industrial cell factories and address open research questions and future directions.
用于生产高质量商业级酶的微生物细胞工厂加速了先进生物制造方法的发展,而这些方法反过来又具有环境友好和可持续的特点。粘细菌是粘球菌门中常用的一个术语,由于其能够合成多种天然产物和裂解酶,因此在生物技术应用方面具有很大的研究价值。这些特性对于强大表达系统的开发至关重要。然而,粘细菌仍然是一种未被充分利用的具有工业相关性的资源。尽管如此,越来越多的食品和工业酶已被鉴定出来,这突出表明粘细菌是探索具有商业应用价值的酶(包括生物质转化)的合适平台。然而,鉴于其庞大的基因组和不同粘细菌分类群之间的多样性,已发现的裂解酶只是冰山一角。尽管前景广阔,但基因工程方面的挑战、生长缓慢以及代谢重塑和表达策略的局限性限制了粘细菌细胞工厂的构建。在这篇综述中,我们重点介绍了新的粘细菌酶和生物质转化资源发现方面的最新进展,重点关注它们在农业和工业中的潜在应用。我们描述了如何通过生物勘探和计算方法鉴定粘细菌及其酶,并总结了当前用于生物制造的生物技术应用和合成生物学策略。最后,我们讨论了粘细菌作为工业细胞工厂的广阔潜力,并探讨了开放的研究问题和未来方向。