Ortiz Charneco Guillermo, Kelleher Philip, Buivydas Andrius, de Waal Paul P, van Rijswijck Irma M H, van Peij Noël N M E, Mahony Jennifer, Van Sinderen Douwe
School of Microbiology & APC Microbiome Ireland, University College Cork, Western Road, Cork, Ireland.
dsm-firmenich; Taste, Texture & Health, Center for Food Innovation, Alexander Fleminglaan 1, 2613 AX Delft, the Netherlands.
Curr Res Microb Sci. 2024 Feb 5;6:100224. doi: 10.1016/j.crmicr.2024.100224. eCollection 2024.
Lactococcal conjugative plasmids are poorly characterized compared to those harbored by numerous other Gram-positive bacteria, despite their significance in dairy fermentations and starter culture development. Furthermore, the transcriptional landscape of these lactococcal conjugation systems and their regulation have not been studied in any detail. Lactococcal plasmids pNP40 and pUC11B possess two genetically distinct and prevalent conjugation systems. Here, we describe the detailed transcriptional analysis of the pNP40 and pUC11B conjugation-associated gene clusters, revealing three and five promoters, respectively, for which the corresponding transcriptional start sites were identified. Regulation of several of these promoters, and therefore conjugation, is shown to involve the individual or concerted activities of the corresponding relaxase and transcriptional repressor(s) encoded by each conjugative plasmid. This work highlights how the conjugative potential of these systems may be unlocked, with significant implications for the starter culture and food fermentation industry.
与许多其他革兰氏阳性菌所携带的质粒相比,乳球菌接合质粒的特征了解较少,尽管它们在乳制品发酵和发酵剂培养物开发中具有重要意义。此外,这些乳球菌接合系统的转录图谱及其调控尚未得到详细研究。乳球菌质粒pNP40和pUC11B拥有两个遗传上不同且普遍存在的接合系统。在此,我们描述了pNP40和pUC11B接合相关基因簇的详细转录分析,分别揭示了三个和五个启动子,并确定了相应的转录起始位点。这些启动子中的几个,进而接合作用,显示出涉及每个接合质粒编码的相应松弛酶和转录阻遏物的个体或协同活性。这项工作突出了如何释放这些系统的接合潜力,对发酵剂培养物和食品发酵行业具有重大意义。