DEPhT: a novel approach for efficient prophage discovery and precise extraction

Author:

Gauthier Christian H1,Abad Lawrence1,Venbakkam Ananya K1,Malnak Julia1,Russell Daniel A1,Hatfull Graham F1ORCID

Affiliation:

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

Abstract

Abstract Advances in genome sequencing have produced hundreds of thousands of bacterial genome sequences, many of which have integrated prophages derived from temperate bacteriophages. These prophages play key roles by influencing bacterial metabolism, pathogenicity, antibiotic resistance, and defense against viral attack. However, they vary considerably even among related bacterial strains, and they are challenging to identify computationally and to extract precisely for comparative genomic analyses. Here, we describe DEPhT, a multimodal tool for prophage discovery and extraction. It has three run modes that facilitate rapid screening of large numbers of bacterial genomes, precise extraction of prophage sequences, and prophage annotation. DEPhT uses genomic architectural features that discriminate between phage and bacterial sequences for efficient prophage discovery, and targeted homology searches for precise prophage extraction. DEPhT is designed for prophage discovery in Mycobacterium genomes but can be adapted broadly to other bacteria. We deploy DEPhT to demonstrate that prophages are prevalent in Mycobacterium strains but are absent not only from the few well-characterized Mycobacterium tuberculosis strains, but also are absent from all ∼30 000 sequenced M. tuberculosis strains.

Funder

NIH

Howard Hughes Medical Institute

Fowler Fund for Phage Research

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference62 articles.

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