Genomic Characterization of a Halovirus Representing a Novel Siphoviral Cluster

Viruses. 2023 Jun 19;15(6):1392. doi: 10.3390/v15061392.

Abstract

Salt mines are a special type of hypersaline environment. Current research mainly focuses on prokaryotes, and the understanding of viruses in salt mines remains limited. Understanding viruses in hypersaline environments is of great significance for revealing the formation and maintenance of microbial communities, energy flow and element cycling, and host ecological functions. A phage infecting Halomonas titanicae was isolated from Yipinglang Salt Mine in China, designated Halomonas titanicae phage vB_HtiS_YPHTV-1 (YPHTV-1). Transmission electron microscopy revealed that YPHTV-1 had an icosahedral head with a diameter of 49.12 ± 0.15 nm (n = 5) and a long noncontractile tail with a length of 141.7 ± 0.58 nm (n = 5), indicating that it was a siphovirus. The one-step growth curve showed that the burst size of YPHTV-1 was 69 plaque forming units (PFUs) cell-1. The genome of YPHTV-1 was 37,980 bp with a GC content of 36.2%. The phylogenetic analysis of the six conserved proteins indicated that YPHTV-1 formed a cluster with Bacillus phages and was separated from phages infecting Halomonas. The average nucleotide identity (ANI), phylogenetic, and network analyses indicated that the phage YPHTV-1 represented a new genus under Caudoviricetes. In total, 57 open reading frames (ORFs) were predicted in the YPHTV-1 genome, 30 of which could be annotated in the database. Notably, several auxiliary metabolic genes were encoded by YPHTV-1, such as ImmA/IrrE family metalloendopeptidase, mannose-binding lectin (MBL) folding metallohydrolase, M15 family of metal peptidases, MazG-like family protein, O antigen ligase, and acyltransferase. These genes potentially enabled the host bacterium to resist ionizing radiation, ultraviolet light (UV), mitomycin C, β-lactam antibiotic, high osmotic pressure, and nutritional deficiencies. These findings highlight the role of haloviruses in the life cycle of halobacteria.

Keywords: Halomonas; auxiliary metabolic genes; bacteriophage; genome; new genus.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacteriophages*
  • Genome, Viral*
  • Genomics
  • Myoviridae / genetics
  • Open Reading Frames
  • Phylogeny
  • Sequence Analysis, DNA

Supplementary concepts

  • Halomonas titanicae

Grants and funding

This research was funded by the National Natural Science Foundation of China (grant number 32071570 and 31200138) and the Yunnan Province Sciences and Technology Department (grant number 202301BD070001-110). And The APC was funded by the National Natural Science Foundation of China (grant number 32071570).