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CRISPRals:一个用于评估 种复合体中 CRISPR 防御系统的网络数据库,以避免噬菌体抗性。

CRISPRals: A Web Database for Assessing the CRISPR Defense System in the Species Complex to Avoid Phage Resistance.

机构信息

Phage Therapy Group, School of Biological Sciences and Engineering, Yachay Tech University, Hcda San José y Proyecto Yachay, 100115, Imbabura, Ecuador.

Phage Therapy Group, School of Mathematical and Computational Sciences, Yachay Tech University, Hcda San José y Proyecto Yachay, 100115, Imbabura, Ecuador.

出版信息

Phytopathology. 2024 Jul;114(7):1462-1465. doi: 10.1094/PHYTO-01-24-0010-SC. Epub 2024 Jun 29.

Abstract

Clustered regularly interspaced short palindromic repeats (CRISPR) has been widely characterized as a defense system against phages and other invading elements in bacteria and archaea. A low percentage of species complex (RSSC) strains possess the CRISPR array and the CRISPR-associated proteins (Cas) that would confer immunity against various phages. To provide a wide-range screen of the CRISPR presence in the RSSC, we analyzed 378 genomes of RSSC strains to find the CRISPR locus. We found that 20.1, 14.3, and 54.5% of the , , and strains, respectively, possess the CRISPR locus. In addition, we performed further analysis to identify the respective phages that are restricted by the CRISPR arrays. We found 252 different phages infecting different strains of the RSSC, by means of the identification of similarities between the protospacers in phages and spacers in bacteria. We compiled this information in a database with web access called CRISPRals (https://crisprals.yachaytech.edu.ec/). Additionally, we made available a number of tools to detect and identify CRISPR array and Cas genes in genomic sequences that could be uploaded by users. Finally, a matching tool to relate bacteria spacer with phage protospacer sequences is available. CRISPRals is a valuable resource for the scientific community that contributes to the study of bacteria-phage interaction and a starting point that will help to design efficient phage therapy strategies.

摘要

成簇规律间隔短回文重复序列(CRISPR)已被广泛描述为细菌和古菌抵御噬菌体和其他入侵元素的防御系统。少数 种复合体(RSSC)菌株拥有 CRISPR 阵列和赋予针对各种噬菌体免疫的 CRISPR 相关蛋白(Cas)。为了对 RSSC 中的 CRISPR 存在进行广泛筛选,我们分析了 378 个 RSSC 菌株的基因组以寻找 CRISPR 基因座。我们发现,分别有 20.1%、14.3%和 54.5%的 、 和 菌株拥有 CRISPR 基因座。此外,我们还进行了进一步分析,以确定被 CRISPR 阵列限制的相应噬菌体。通过识别噬菌体的原间隔区和细菌间隔区之间的相似性,我们发现了 252 种不同的噬菌体感染了 RSSC 的不同菌株。我们将这些信息汇编到一个名为 CRISPRals(https://crisprals.yachaytech.edu.ec/)的具有网络访问权限的数据库中。此外,我们还提供了一些工具,用于检测和识别基因组序列中的 CRISPR 阵列和 Cas 基因,用户可以上传这些序列。最后,还提供了一个将细菌间隔区与噬菌体原间隔区序列相关联的匹配工具。CRISPRals 是科学界的宝贵资源,有助于研究细菌-噬菌体相互作用,并为设计有效的噬菌体治疗策略提供起点。

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