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建立 ETECFinder 数据库,用于分析肠产毒性大肠杆菌 (ETEC),并修订 CGE 网站上的 VirulenceFinder 网络工具。

Construction of the ETECFinder database for the characterization of enterotoxigenic (ETEC) and revision of the VirulenceFinder web tool at the CGE website.

机构信息

The International Escherichia and Klebsiella Centre, Statens Serum Institut, Copenhagen, Denmark.

Department of Bacteria, Parasites and Fungi, Statens Serum Institut, Copenhagen, Denmark.

出版信息

J Clin Microbiol. 2024 Jun 12;62(6):e0057023. doi: 10.1128/jcm.00570-23. Epub 2024 Apr 24.

Abstract

UNLABELLED

The identification of pathogens is essential for effective surveillance and outbreak detection, which lately has been facilitated by the decreasing cost of whole-genome sequencing (WGS). However, extracting relevant virulence genes from WGS data remains a challenge. In this study, we developed a web-based tool to predict virulence-associated genes in enterotoxigenic (ETEC), which is a major concern for human and animal health. The database includes genes encoding the heat-labile toxin (LT) ( and ), heat-stable toxin (ST) (), colonization factors CS1 through 30, F4, F5, F6, F17, F18, and F41, as well as toxigenic invasion and adherence (, , , , , and ). To construct the database, we revised the existing ETEC nomenclature and used the VirulenceFinder webtool at the CGE website [VirulenceFinder 2.0 (dtu.dk)]. The database was tested on 1,083 preassembled ETEC genomes, two BioProjects (PRJNA421191 with 305 and PRJNA416134 with 134 sequences), and the ETEC reference genome H10407. In total, 455 new virulence gene alleles were added, 50 alleles were replaced or renamed, and two were removed. Overall, our tool has the potential to greatly facilitate ETEC identification and improve the accuracy of WGS analysis. It can also help identify potential new virulence genes in ETEC. The revised nomenclature and expanded gene repertoire provide a better understanding of the genetic diversity of ETEC. Additionally, the user-friendly interface makes it accessible to users with limited bioinformatics experience.

IMPORTANCE

Detecting colonization factors in enterotoxigenic (ETEC) is challenging due to their large number, heterogeneity, and lack of standardized tests. Therefore, it is important to include these ETEC-related genes in a more comprehensive VirulenceFinder database in order to obtain a more complete coverage of the virulence gene repertoire of pathogenic types of . ETEC vaccines are of great importance due to the severity of the infections, primarily in children. A tool such as this could assist in the surveillance of ETEC in order to determine the prevalence of relevant types in different parts of the world, allowing vaccine developers to target the most prevalent types and, thus, a more effective vaccine.

摘要

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病原体的鉴定对于有效的监测和暴发检测至关重要,最近全基因组测序(WGS)成本的降低为此提供了便利。然而,从 WGS 数据中提取相关的毒力基因仍然是一个挑战。在这项研究中,我们开发了一种基于网络的工具,用于预测肠产毒性(ETEC)中的毒力相关基因,这是人类和动物健康的主要关注点。该数据库包括编码不耐热毒素(LT)( 和 )、耐热毒素(ST)()、定植因子 CS1 至 30、F4、F5、F6、F17、F18 和 F41,以及毒力侵袭和粘附(、、、、、和)的基因。为了构建数据库,我们修订了现有的 ETEC 命名法,并使用 CGE 网站上的 VirulenceFinder 网络工具[VirulenceFinder 2.0(dtu.dk)]。该数据库在 1083 个预组装的 ETEC 基因组、两个 BioProjects(PRJNA421191 有 305 个序列和 PRJNA416134 有 134 个序列)和 ETEC 参考基因组 H10407 上进行了测试。总共添加了 455 个新的毒力基因等位基因,替换或重命名了 50 个等位基因,删除了 2 个。总的来说,我们的工具具有极大地促进 ETEC 鉴定和提高 WGS 分析准确性的潜力。它还可以帮助识别 ETEC 中的潜在新毒力基因。修订后的命名法和扩展的基因库有助于更好地了解 ETEC 的遗传多样性。此外,用户友好的界面使其易于供具有有限生物信息学经验的用户使用。

重要性

由于定植因子数量多、异质性大且缺乏标准化检测,因此在肠产毒性(ETEC)中检测定植因子具有挑战性。因此,将这些与 ETEC 相关的基因纳入更全面的 VirulenceFinder 数据库中,以更完整地涵盖致病性类型的毒力基因库非常重要。由于感染的严重性,尤其是在儿童中,ETEC 疫苗非常重要。这样的工具可以帮助监测 ETEC,以确定不同地区相关类型的流行程度,从而使疫苗开发人员能够针对最流行的类型,从而开发出更有效的疫苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b05/11237473/15064d1f6515/jcm.00570-23.f001.jpg

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