Department of Functional Biology, Microbiology Area, IUOPA and ISPA, Faculty of Medicine, Universidad de Oviedo, 33006 Oviedo, Spain.
Int J Mol Sci. 2024 Oct 21;25(20):11298. doi: 10.3390/ijms252011298.
Essential genes are crucial for microbial viability, playing key roles in both the primary and secondary metabolism. Since mutations in these genes can threaten organism viability, identifying them is challenging. Conditionally essential genes are required only under specific conditions and are important for functions such as virulence, immunity, stress survival, and antibiotic resistance. Transposon-directed sequencing (Tn-Seq) has emerged as a powerful method for identifying both essential and conditionally essential genes. In this review, we explored Tn-Seq workflows, focusing on eubacterial species and some yeast species. A comparison of 14 eubacteria species revealed 133 conserved essential genes, including those involved in cell division (e.g., , ), DNA replication (e.g., , ), ribosomal function, cell wall synthesis (e.g., , ), and amino acid synthesis (e.g., , ). Many other essential genes lack clear orthologues across different microorganisms, making them specific to each organism studied. Conditionally essential genes were identified in 18 bacterial species grown under various conditions, but their conservation was low, reflecting dependence on specific environments and microorganisms. Advances in Tn-Seq are expected to reveal more essential genes in the near future, deepening our understanding of microbial biology and enhancing our ability to manipulate microbial growth, as well as both the primary and secondary metabolism.
必需基因对于微生物的生存至关重要,它们在初级和次级代谢中都起着关键作用。由于这些基因的突变可能会威胁到生物体的生存能力,因此识别它们具有挑战性。条件必需基因仅在特定条件下才需要,对于毒力、免疫、应激生存和抗生素耐药性等功能非常重要。转座子指导的测序(Tn-Seq)已成为一种识别必需基因和条件必需基因的强大方法。在这篇综述中,我们探讨了 Tn-Seq 工作流程,重点关注了真细菌物种和一些酵母物种。对 14 种真细菌物种的比较揭示了 133 个保守的必需基因,包括参与细胞分裂(例如, , )、DNA 复制(例如, , )、核糖体功能、细胞壁合成(例如, , )和氨基酸合成(例如, , )的基因。许多其他必需基因在不同的微生物中缺乏明确的同源物,因此它们是每个研究的生物体所特有的。在各种条件下生长的 18 种细菌中鉴定出了条件必需基因,但它们的保守性较低,反映了它们对特定环境和微生物的依赖性。Tn-Seq 的进展有望在不久的将来揭示更多的必需基因,从而加深我们对微生物生物学的理解,并增强我们操纵微生物生长以及初级和次级代谢的能力。