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Expanding the Diversity of Actinobacterial Tectiviridae: A Novel Genus from Microbacterium
Jacqueline M Washington1,2, Holly Basta3, Angela Bryanne De Jesus1,4
1Department of Biology and Chemistry, Alliance University, New York, NY 10004, USA.
Abstract:
Six novel Microbacterium phages belonging to the Tectiviridae family were isolated using Microbacterium testaceum as a host. Phages MuffinTheCat, Badulia, DesireeRose, Bee17, SCoupsA, and LuzDeMundo were purified from environmental samples by students participating in the Science Education Alliance Phage Hunters Advancing Genomics and Evolutionary Science (SEA-PHAGES) program at Alliance University, New York. The phages have linear dsDNA genomes 15,438-15,636 bp with 112-120 bp inverted terminal repeats. Transmission electron microscopy (TEM) imaging analysis revealed that the six novel phages have six-sided icosahedral double-layered capsids with an internal lipid membrane that occasionally forms protruding nanotubules. Annotation analysis determined that the novel Microbacterium phages all have 32-34 protein-coding genes and no tRNAs. Like other Tectiviridae, the phage genomes are arranged into two segments and include three highly conserved family genes that encode a DNA polymerase, double jelly-roll major capsid protein, and packaging ATPase. Although the novel bacteriophages have 91.6 to 97.5% nucleotide sequence similarity to each other, they are at most 58% similar to previously characterized Tectiviridae genera. Consequently, these novel Microbacterium phages expand the diversity of the Tectiviridae family, and we propose they form the sixth genus, Zetatectivirus.
Insights
Six new bacteriophages were discovered infecting Microbacterium testaceum. These novel viruses expand the Tectiviridae family, proposing a new genus, Zetatectivirus.
Area of Science:
- Microbiology
- Virology
- Genomics
Background:
- The Tectiviridae family comprises bacteriophages with specific genomic and structural characteristics.
- Bacteriophage discovery is crucial for understanding viral diversity and potential applications.
Purpose of the Study:
- To isolate and characterize novel bacteriophages infecting Microbacterium testaceum.
- To determine the phylogenetic placement and genomic features of newly discovered phages.
- To propose a new genus within the Tectiviridae family based on genomic divergence.
Main Methods:
- Isolation of phages from environmental samples.
- Transmission electron microscopy (TEM) for structural analysis.
- Genome sequencing and annotation for genetic characterization.
- Phylogenetic analysis to determine sequence similarity.
Main Results:
- Six novel Tectiviridae phages (MuffinTheCat, Badulia, DesireeRose, Bee17, SCoupsA, LuzDeMundo) were isolated.
- Phages possess linear dsDNA genomes (15,438-15,636 bp) with inverted terminal repeats and icosahedral capsids.
- Genomic analysis revealed high similarity among the new phages but significant divergence from known Tectiviridae genera (≤58%).
Conclusions:
- The newly isolated Microbacterium phages represent a distinct lineage within the Tectiviridae family.
- These findings expand the known diversity of Tectiviridae.
- A new genus, Zetatectivirus, is proposed to accommodate these novel phages.
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