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BacSPaD:一个基于整合和整理的基因组元数据的强大细菌菌株致病性资源库。

BacSPaD: A Robust Bacterial Strains' Pathogenicity Resource Based on Integrated and Curated Genomic Metadata.

作者信息

Ribeiro Sara, Chaumet Guillaume, Alves Karine, Nourikyan Julien, Shi Lei, Lavergne Jean-Pierre, Mijakovic Ivan, de Bernard Simon, Buffat Laurent

机构信息

AltraBio SAS, 69007 Lyon, France.

Bases Moléculaires et Structurales des Systèmes Infectieux, IBCP, Université Lyon 1, CNRS, UMR 5086, 69007 Lyon, France.

出版信息

Pathogens. 2024 Aug 9;13(8):672. doi: 10.3390/pathogens13080672.

Abstract

The vast array of omics data in microbiology presents significant opportunities for studying bacterial pathogenesis and creating computational tools for predicting pathogenic potential. However, the field lacks a comprehensive, curated resource that catalogs bacterial strains and their ability to cause human infections. Current methods for identifying pathogenicity determinants often introduce biases and miss critical aspects of bacterial pathogenesis. In response to this gap, we introduce BacSPaD (Bacterial Strains' Pathogenicity Database), a thoroughly curated database focusing on pathogenicity annotations for a wide range of high-quality, complete bacterial genomes. Our rule-based annotation workflow combines metadata from trusted sources with automated keyword matching, extensive manual curation, and detailed literature review. Our analysis classified 5502 genomes as pathogenic to humans (HP) and 490 as non-pathogenic to humans (NHP), encompassing 532 species, 193 genera, and 96 families. Statistical analysis demonstrated a significant but moderate correlation between virulence factors and HP classification, highlighting the complexity of bacterial pathogenicity and the need for ongoing research. This resource is poised to enhance our understanding of bacterial pathogenicity mechanisms and aid in the development of predictive models. To improve accessibility and provide key visualization statistics, we developed a user-friendly web interface.

摘要

微生物学中大量的组学数据为研究细菌致病机制和创建预测致病潜力的计算工具提供了重要机遇。然而,该领域缺乏一个全面、经过整理的资源来编目细菌菌株及其引起人类感染的能力。目前用于识别致病性决定因素的方法往往会引入偏差,并且遗漏细菌致病机制的关键方面。针对这一差距,我们推出了BacSPaD(细菌菌株致病性数据库),这是一个经过全面整理的数据库,专注于对广泛的高质量、完整细菌基因组进行致病性注释。我们基于规则的注释工作流程将来自可靠来源的元数据与自动关键词匹配、广泛的人工整理和详细的文献综述相结合。我们的分析将5502个基因组分类为对人类致病(HP),490个基因组分类为对人类非致病(NHP),涵盖532个物种、193个属和96个科。统计分析表明毒力因子与HP分类之间存在显著但适度的相关性,突出了细菌致病性的复杂性以及持续研究的必要性。这一资源有望增进我们对细菌致病机制的理解,并有助于预测模型的开发。为了提高可访问性并提供关键的可视化统计信息,我们开发了一个用户友好的网络界面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8621/11357117/96756065cdd3/pathogens-13-00672-g001.jpg

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