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TnCentral:原核转座子数据库和转座子分析网络门户。

TnCentral: a Prokaryotic Transposable Element Database and Web Portal for Transposon Analysis.

机构信息

Protein Information Resource, Department of Biochemistry and Molecular and Cellular Biology, Georgetown University Medical Center, Washington, DC, USA.

School of Agricultural and Veterinary Sciences, Universidade Estadual Paulista, Jaboticabal, Sao Paulo, Brazil.

出版信息

mBio. 2021 Oct 26;12(5):e0206021. doi: 10.1128/mBio.02060-21. Epub 2021 Sep 14.

Abstract

We describe here the structure and organization of TnCentral (https://tncentral.proteininformationresource.org/ [or the mirror link at https://tncentral.ncc.unesp.br/]), a web resource for prokaryotic transposable elements (TE). TnCentral currently contains ∼400 carefully annotated TE, including transposons from the Tn, Tn, Tn, and Tn families; compound transposons; integrons; and associated insertion sequences (IS). These TE carry passenger genes, including genes conferring resistance to over 25 classes of antibiotics and nine types of heavy metal, as well as genes responsible for pathogenesis in plants, toxin/antitoxin gene pairs, transcription factors, and genes involved in metabolism. Each TE has its own entry page, providing details about its transposition genes, passenger genes, and other sequence features required for transposition, as well as a graphical map of all features. TnCentral content can be browsed and queried through text- and sequence-based searches with a graphic output. We describe three use cases, which illustrate how the search interface, results tables, and entry pages can be used to explore and compare TE. TnCentral also includes downloadable software to facilitate user-driven identification, with manual annotation, of certain types of TE in genomic sequences. Through the TnCentral homepage, users can also access TnPedia, which provides comprehensive reviews of the major TE families, including an extensive general section and specialized sections with descriptions of insertion sequence and transposon families. TnCentral and TnPedia are intuitive resources that can be used by clinicians and scientists to assess TE diversity in clinical, veterinary, and environmental samples. The ability of bacteria to undergo rapid evolution and adapt to changing environmental circumstances drives the public health crisis of multiple antibiotic resistance, as well as outbreaks of disease in economically important agricultural crops and animal husbandry. Prokaryotic transposable elements (TE) play a critical role in this. Many carry "passenger genes" (not required for the transposition process) conferring resistance to antibiotics or heavy metals or causing disease in plants and animals. Passenger genes are spread by normal TE transposition activities and by insertion into plasmids, which then spread via conjugation within and across bacterial populations. Thus, an understanding of TE composition and transposition mechanisms is key to developing strategies to combat bacterial pathogenesis. Toward this end, we have developed TnCentral, a bioinformatics resource dedicated to describing and exploring the structural and functional features of prokaryotic TE whose use is intuitive and accessible to users with or without bioinformatics expertise.

摘要

我们在这里描述了 TnCentral(https://tncentral.proteininformationresource.org/[或镜像链接 https://tncentral.ncc.unesp.br/])的结构和组织,这是一个用于原核转座元件(TE)的网络资源。TnCentral 目前包含约 400 个经过精心注释的 TE,包括 Tn、Tn、Tn 和 Tn 家族的转座子;复合转座子;整合子;和相关的插入序列(IS)。这些 TE 携带乘客基因,包括对抗超过 25 类抗生素和 9 种重金属的抗性基因,以及在植物中引起疾病的基因、毒素/抗毒素基因对、转录因子和参与代谢的基因。每个 TE 都有自己的条目页面,提供有关其转座基因、乘客基因和其他转座所需的序列特征的详细信息,以及所有特征的图形图谱。TnCentral 的内容可以通过基于文本和序列的搜索进行浏览和查询,并提供图形输出。我们描述了三个用例,说明了如何使用搜索界面、结果表和条目页面来探索和比较 TE。TnCentral 还包括可下载的软件,以方便用户驱动的识别,并用手动注释标记基因组序列中的某些类型的 TE。通过 TnCentral 主页,用户还可以访问 TnPedia,它提供了主要 TE 家族的综合评论,包括广泛的一般部分和专门介绍插入序列和转座子家族的部分。TnCentral 和 TnPedia 是直观的资源,临床医生和科学家可以使用它们来评估临床、兽医和环境样本中的 TE 多样性。细菌快速进化和适应不断变化的环境的能力导致了多种抗生素耐药性的公共卫生危机,以及经济上重要的农业作物和畜牧业中疾病的爆发。原核转座元件(TE)在这方面起着关键作用。许多携带“乘客基因”(不参与转座过程),对抗生素或重金属具有抗性,或导致植物和动物患病。乘客基因通过正常的 TE 转座活动传播,并通过插入质粒传播,然后通过细菌种群内和种群间的共轭传播。因此,了解 TE 的组成和转位机制是制定对抗细菌发病机制策略的关键。为此,我们开发了 TnCentral,这是一个致力于描述和探索原核 TE 的结构和功能特征的生物信息学资源,其使用对具有或不具有生物信息学专业知识的用户来说都是直观且易于访问的。

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