Floras Fisentzos, Mawere Chantell, Singh Manvir, Wootton Victoria, Hamstead Luke, McVicker Gareth, Leo Jack C
Antimicrobial Resistance, Omics and Microbiota Group, Department of Biosciences, Nottingham Trent University, Nottingham NG1 4FQ, UK.
Biology (Basel). 2024 Aug 23;13(9):652. doi: 10.3390/biology13090652.
The bacterium causes enteric redmouth disease in salmonids and hence has substantial economic implications for the farmed fish industry. The Norwegian outbreak isolate NVH_3758 carries a relatively uncharacterized plasmid, pYR4, which encodes both type 4 pili and a type 4 secretion system. In this study, we demonstrate that pYR4 does not impose a growth burden on the host bacterium, nor does the plasmid contribute to twitching motility (an indicator of type 4 pilus function) or virulence in a larval model of infection. However, we show that pYR4 is conjugative. We also reveal, through mutagenesis, that pYR4 encodes a functional post-segregational killing system, HigBA, that is responsible for plasmid maintenance within . This is the first toxin-antitoxin system to be characterized for this organism. Whilst further work is needed to elucidate the virulence role of pYR4 and whether it contributes to bacterial disease under non-laboratory conditions, our results suggest that the plasmid possesses substantial stability and transfer mechanisms that imply importance within the organism. These results add to our understanding of the mobile genetic elements and evolutionary trajectory of as an important commercial pathogen, with consequences for human food production.
这种细菌会导致鲑科鱼类患上肠道红嘴病,因此对养殖鱼类产业具有重大经济影响。挪威疫情分离株NVH_3758携带一个相对未被充分表征的质粒pYR4,该质粒编码IV型菌毛和IV型分泌系统。在本研究中,我们证明pYR4不会给宿主细菌带来生长负担,在幼虫感染模型中,该质粒也不会促进颤动运动(IV型菌毛功能的一个指标)或毒力。然而,我们表明pYR4是可接合的。我们还通过诱变揭示,pYR4编码一个功能性的后分离杀伤系统HigBA,该系统负责在菌体内维持质粒。这是首次针对该生物体表征的毒素-抗毒素系统。虽然需要进一步开展工作来阐明pYR4的毒力作用以及它在非实验室条件下是否会导致细菌疾病,但我们的结果表明,该质粒具有强大的稳定性和转移机制,这意味着它在菌体内具有重要性。这些结果增进了我们对作为重要商业病原体的该菌的移动遗传元件和进化轨迹的理解,对人类食品生产具有影响。