Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Int J Mol Sci. 2024 May 26;25(11):5781. doi: 10.3390/ijms25115781.
The increasing problem of antimicrobial resistance in necessitates the development of molecular typing schemes that are suitable for rapid and mass screening. The objective of this study was to design and validate a mini-MLST scheme for based on global pathogen population data. Using sequences of seven housekeeping genes of 21,402 isolates with known MLSTs from the PubMLST database, we identified eighteen informative polymorphisms and obtained mini-MLST nucleotide profiles to predict MLSTs of isolates. We proposed a new MLST grouping system for based on mini-MLST profiles. Phylogenetic analysis revealed that MLST genogroups are a stable characteristic of the global population. The proposed grouping system has been shown to bring together isolates with similar antimicrobial susceptibility, as demonstrated by the characteristics of major genogroups. Established MLST prediction algorithms based on nucleotide profiles are now publicly available. The mini-MLST scheme was evaluated using a MLST detection/prediction method based on the original hydrogel DNA microarray. The results confirmed a high predictive ability up to the MLST genogroup. The proposed holistic approach to gonococcal population analysis can be used for the continuous surveillance of known and emerging resistant isolates.
由于抗菌药物耐药性问题日益严重,因此需要开发适合快速和大规模筛选的分子分型方案。本研究旨在根据全球病原体群体数据设计和验证一种基于 mini-MLST 的奈瑟氏淋病奈瑟菌方案。我们使用 PubMLST 数据库中已知 MLST 的 21402 株分离株的七个管家基因序列,鉴定了 18 个信息性多态性,并获得了 mini-MLST 核苷酸谱,以预测分离株的 MLST。我们基于 mini-MLST 谱提出了一种新的奈瑟氏淋病奈瑟菌 MLST 分组系统。系统发育分析表明,MLST 基因群是奈瑟氏淋病奈瑟菌全球群体的一个稳定特征。所提出的分组系统已被证明可以将具有相似抗菌药物敏感性的分离株聚集在一起,这从主要基因群的特征中可以看出。基于核苷酸谱的现有 MLST 预测算法现在已经公开。我们使用基于原始水凝胶 DNA 微阵列的 MLST 检测/预测方法对 mini-MLST 方案进行了评估。结果证实了其对 MLST 基因群的高预测能力。该方案可以用于连续监测已知和新出现的耐药奈瑟氏淋病奈瑟菌分离株。