Prophage-DB:一个全面的数据库,探索的多样性,分布和生态的噬菌体。

IF 6.2 2区 环境科学与生态学 Q1 GENETICS & HEREDITY
Etan Dieppa-Colón, Cody Martin, James C Kosmopoulos, Karthik Anantharaman
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引用次数: 0

摘要

背景:感染原核生物(噬菌体)的病毒是最丰富的一类生物制剂,在微生物系统中起着关键作用。众所周知,它们会影响微生物群落动态、微生物生态学和进化。对噬菌体感染的多样性、宿主范围、感染动态以及对宿主细胞代谢的影响的研究还非常不足。噬菌体根据其生命周期分为毒性和温带两类。温带噬菌体采用溶原感染模式,基因组整合到宿主细胞基因组中形成噬菌体。前噬菌体能够在不裂解宿主细胞的情况下进行病毒基因组复制,并且经常为宿主基因组提供新的和有益的特性。目前的噬菌体研究主要集中在裂解噬菌体上,对噬菌体的生物学、多样性和生态学作用等方面的认识存在很大的空白。结果:在这里,我们开发并描述了Prophage-DB,这是一个关于噬菌体、它们的蛋白质和相关元数据的数据库,将作为病毒基因组学和微生物生态学的资源。为了创建这个数据库,我们从三个最大的公开数据库中鉴定和表征了噬菌体的基因组。我们使用了几种最先进的工具来对这些病毒进行注释、聚类、分类,并检测它们各自的辅助代谢基因。我们总共鉴定和表征了超过350,000个前噬菌体和35,000个辅助代谢基因。根据统计结果,我们的噬菌体数据库具有很高的代表性,并且包含来自各种古细菌和细菌宿主的噬菌体,它们显示出广泛的环境分布。结论:鉴于前噬菌体对微生物群及其宿主的重要意义,它们尤其被忽视,值得越来越多的关注,我们创建了Prophage-DB,通过对公开可获得的基因组中前噬菌体的全面表征来推进我们对微生物群中前噬菌体的理解。我们建议Prophage-DB将成为推进噬菌体研究的宝贵资源,为病毒分类,宿主关系,辅助代谢基因和环境分布提供见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prophage-DB: a comprehensive database to explore diversity, distribution, and ecology of prophages.

Background: Viruses that infect prokaryotes (phages) constitute the most abundant group of biological agents, playing pivotal roles in microbial systems. They are known to impact microbial community dynamics, microbial ecology, and evolution. Efforts to document the diversity, host range, infection dynamics, and effects of bacteriophage infection on host cell metabolism are extremely underexplored. Phages are classified as virulent or temperate based on their life cycles. Temperate phages adopt the lysogenic mode of infection, where the genome integrates into the host cell genome forming a prophage. Prophages enable viral genome replication without host cell lysis, and often contribute novel and beneficial traits to the host genome. Current phage research predominantly focuses on lytic phages, leaving a significant gap in knowledge regarding prophages, including their biology, diversity, and ecological roles.

Results: Here we develop and describe Prophage-DB, a database of prophages, their proteins, and associated metadata that will serve as a resource for viral genomics and microbial ecology. To create the database, we identified and characterized prophages from genomes in three of the largest publicly available databases. We applied several state-of-the-art tools in our pipeline to annotate these viruses, cluster them, taxonomically classify them, and detect their respective auxiliary metabolic genes. In total, we identify and characterize over 350,000 prophages and 35,000 auxiliary metabolic genes. Our prophage database is highly representative based on statistical results and contains prophages from a diverse set of archaeal and bacterial hosts which show a wide environmental distribution.

Conclusion: Given that prophages are particularly overlooked and merit increased attention due to their vital implications for microbiomes and their hosts, we created Prophage-DB to advance our understanding of prophages in microbiomes through a comprehensive characterization of prophages in publicly available genomes. We propose that Prophage-DB will serve as a valuable resource for advancing phage research, offering insights into viral taxonomy, host relationships, auxiliary metabolic genes, and environmental distribution.

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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
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