The Genome of Varunaivibrio sulfuroxidans Strain TC8T, a Metabolically Versatile Alphaproteobacterium from the Tor Caldara Gas Vents in the Tyrrhenian Sea

Author:

Patwardhan Sushmita1,Phan Jonathan2,Smedile Francesco1ORCID,Vetriani Costantino12

Affiliation:

1. Department of Marine and Coastal Sciences, Rutgers University, New Brunswick, NJ 08901, USA

2. Department of Biochemistry and Microbiology, Rutgers University, New Brunswick, NJ 08901, USA

Abstract

Varunaivibrio sulfuroxidans type strain TC8T is a mesophilic, facultatively anaerobic, facultatively chemolithoautotrophic alphaproteobacterium isolated from a sulfidic shallow-water marine gas vent located at Tor Caldara, Tyrrhenian Sea, Italy. V. sulfuroxidans belongs to the family Thalassospiraceae within the Alphaproteobacteria, with Magnetovibrio blakemorei as its closest relative. The genome of V. sulfuroxidans encodes the genes involved in sulfur, thiosulfate and sulfide oxidation, as well as nitrate and oxygen respiration. The genome encodes the genes involved in carbon fixation via the Calvin–Benson–Bassham cycle, in addition to genes involved in glycolysis and the TCA cycle, indicating a mixotrophic lifestyle. Genes involved in the detoxification of mercury and arsenate are also present. The genome also encodes a complete flagellar complex, one intact prophage and one CRISPR, as well as a putative DNA uptake mechanism mediated by the type IVc (aka Tad pilus) secretion system. Overall, the genome of Varunaivibrio sulfuroxidans highlights the organism’s metabolic versatility, a characteristic that makes this strain well-adapted to the dynamic environmental conditions of sulfidic gas vents.

Funder

National Science Foundation

National Aeronautics and Space Administration

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference71 articles.

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3. Metaproteogenomic Profiling of Chemosynthetic Microbial Biofilms Reveals Metabolic Flexibility during Colonization of a Shallow-Water Gas Vent;Patwardhan;Front. Microbiol.,2021

4. Patwardhan, S.S. (2018). Prokaryotic diversity, physiology and function at Tor Caldara, a shallow-water gas vent in the Tyrrhenian Sea. [Doctoral Dissertation, Rutgers University-School of Graduate Studies].

5. Bacterial diversity in hydrothermal sediment and epsilonproteobacterial dominance in experimental microcolonizers at the Mid-Atlantic Ridge;Duperron;Environ. Microbiol.,2003

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