Prey Range and Genome Evolution of Halobacteriovorax marinus Predatory Bacteria from an Estuary

Author:

Enos Brett G.1,Anthony Molly K.1,DeGiorgis Joseph A.12,Williams Laura E.1ORCID

Affiliation:

1. Department of Biology, Providence College, Providence, Rhode Island, USA

2. Cellular Dynamics Program, Marine Biological Laboratory, Woods Hole, Massachusetts, USA

Abstract

Predatory bacteria attack and digest other bacteria and therefore may play a role in shaping microbial communities. To investigate phenotypic and genotypic variation in saltwater-adapted predatory bacteria, we isolated Halobacteriovorax marinus BE01 from an estuary in Rhode Island, assayed whether it could attack different prey bacteria, and sequenced and analyzed its genome. We found that BE01 is a prey generalist, attacking bacteria from different phylogenetic groups and environments. Gene order and amino acid sequences are highly conserved between BE01 and the H. marinus type strain, SJ. By comparative genomics, we detected two regions of gene content difference that likely occurred via horizontal gene transfer events. Acquired genes encode functions such as modification of DNA, membrane synthesis and regulation of gene expression. Understanding genome evolution and variation in predation phenotypes among predatory bacteria will inform their development as biocontrol agents and clarify how they impact microbial communities.

Funder

Providence College

HHS | National Institutes of Health

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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