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一个用于噬菌体基因组学的生物信息学生态系统:PhaMMSeqs、Pha merator、pdm_utils、PhagesDB、DEPhT 和 PhamClust。

A Bioinformatic Ecosystem for Bacteriophage Genomics: PhaMMSeqs, Phamerator, pdm_utils, PhagesDB, DEPhT, and PhamClust.

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA 15260, USA.

出版信息

Viruses. 2024 Aug 10;16(8):1278. doi: 10.3390/v16081278.

Abstract

The last thirty years have seen a meteoric rise in the number of sequenced bacteriophage genomes, spurred on by both the rise and success of groups working to isolate and characterize phages, and the rapid and significant technological improvements and reduced costs associated with sequencing their genomes. Over the course of these decades, the tools used to glean evolutionary insights from these sequences have grown more complex and sophisticated, and we describe here the suite of computational and bioinformatic tools used extensively by the integrated research-education communities such as SEA-PHAGES and PHIRE, which are jointly responsible for 25% of all complete phage genomes in the RefSeq database. These tools are used to integrate and analyze phage genome data from different sources, for identification and precise extraction of prophages from bacterial genomes, computing "phamilies" of related genes, and displaying the complex nucleotide and amino acid level mosaicism of these genomes. While over 50,000 SEA-PHAGES students have primarily benefitted from these tools, they are freely available for the phage community at large.

摘要

过去三十年中,由于致力于分离和鉴定噬菌体的团队的兴起和成功,以及测序其基因组的快速显著技术改进和成本降低,测序的噬菌体基因组数量呈指数级增长。在这几十年中,从这些序列中获取进化见解的工具变得更加复杂和精细,我们在这里描述了由集成研究教育社区(如 SEA-PHAGES 和 PHIRE)广泛使用的一整套计算和生物信息学工具,这些社区共同负责 RefSeq 数据库中所有完整噬菌体基因组的 25%。这些工具用于整合和分析来自不同来源的噬菌体基因组数据,用于从细菌基因组中识别和精确提取原噬菌体,计算相关基因的“phamilies”,并显示这些基因组在核苷酸和氨基酸水平上的复杂镶嵌现象。虽然超过 50000 名 SEA-PHAGES 学生主要受益于这些工具,但它们也可供广大噬菌体社区免费使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a42/11359507/0ed1cb02837d/viruses-16-01278-g001.jpg

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