Gordils-Valentin Lois, Ouyang Huanrong, Qian Liangyu, Hong Joshua, Zhu Xuejun
Department of Chemical Engineering, Texas A&M University, College Station, 77843, TX, US.
Interdisciplinary Graduate Program in Genetics & Genomics, Texas A&M University, College Station, 77843, TX, US.
Commun Biol. 2024 Apr 25;7(1):499. doi: 10.1038/s42003-024-06192-8.
Bacterial cooperation and antagonism mediated by secretion systems are among the ways in which bacteria interact with one another. Here we report the discovery of an antagonistic property of a type IV secretion system (T4SS) sourced from a conjugative plasmid, RP4, using engineering approaches. We scrutinized the genetic determinants and suggested that this antagonistic activity is independent of molecular cargos, while we also elucidated the resistance genes. We further showed that a range of Gram-negative bacteria and a mixed bacterial population can be eliminated by this T4SS-dependent antagonism. Finally, we showed that such an antagonistic property is not limited to T4SS sourced from RP4, rather it can also be observed in a T4SS originated from another conjugative plasmid, namely R388. Our results are the first demonstration of conjugative T4SS-dependent antagonism between Gram-negative bacteria on the genetic level and provide the foundation for future mechanistic studies.
由分泌系统介导的细菌合作与拮抗作用是细菌相互作用的方式之一。在此,我们报告利用工程学方法发现了源自接合质粒RP4的IV型分泌系统(T4SS)的拮抗特性。我们仔细研究了遗传决定因素,并表明这种拮抗活性独立于分子货物,同时我们还阐明了抗性基因。我们进一步表明,一系列革兰氏阴性菌和混合细菌群体可通过这种依赖T4SS的拮抗作用被清除。最后,我们表明这种拮抗特性不仅限于源自RP4的T4SS,在源自另一个接合质粒即R388的T4SS中也能观察到。我们的结果首次在遗传水平上证明了革兰氏阴性菌之间依赖接合性T4SS的拮抗作用,并为未来的机制研究奠定了基础。