Jones Jennifer, Murphy Craig P, Sleator Roy D, Culligan Eamonn P
Department of Biological Sciences, Munster Technological University, Bishopstown, Cork T12 P928, Ireland.
Microbiome Res Rep. 2024 Mar 27;3(2):24. doi: 10.20517/mrr.2023.78. eCollection 2024.
The role of the urobiome in health and disease remains an understudied area compared to the rest of the human microbiome. Enhanced culturing techniques and next-generation sequencing technologies have identified the urobiome as an untapped source of potentially novel antimicrobials. The aim of this study was to screen the urobiome for genes encoding bacteriocin production. The genomes of 181 bacterial urobiome isolates were screened for the presence of bacteriocin gene clusters using the bacteriocin mining tool BAGEL4 and secondary metabolite screening tool antiSMASH7 From these isolates, an initial 263 areas of interest were identified, manually annotated, and evaluated for potential bacteriocin gene clusters. This resulted in 32 isolates containing 80 potential bacteriocin gene clusters, of which 72% were identified as class II, 13.75% as class III, 8.75% as class I, and 5% as unclassified bacteriocins. Overall, 53 novel variants were discovered, including nisin, gassericin, ubericin, and colicins.
与人类微生物组的其他部分相比,泌尿微生物组在健康和疾病中的作用仍是一个研究不足的领域。先进的培养技术和下一代测序技术已将泌尿微生物组确定为潜在新型抗菌剂的未开发来源。本研究的目的是筛选泌尿微生物组中编码细菌素产生的基因。使用细菌素挖掘工具BAGEL4和次生代谢物筛选工具antiSMASH7,对181株泌尿微生物组细菌分离株的基因组进行筛选,以检测细菌素基因簇的存在。从这些分离株中,初步确定了263个感兴趣的区域,进行了人工注释,并评估了潜在的细菌素基因簇。这导致32株分离株含有80个潜在的细菌素基因簇,其中72%被鉴定为II类,13.75%为III类,8.75%为I类,5%为未分类的细菌素。总体而言,发现了53个新变体,包括乳链菌肽、加塞菌素、泌尿菌素和大肠杆菌素。