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dc.contributor.authorDe Mesa, Czarina Anne
dc.contributor.authorMendoza, Remilyn
dc.contributor.authorPenir, Sarah Mae
dc.contributor.authordela Pena, Leobert D.
dc.contributor.authorAmar, Edgar
dc.contributor.authorSaloma, Cynthia
dc.coverage.spatialMasbateen
dc.coverage.spatialPhilippinesen
dc.date.accessioned2023-03-28T03:12:13Z
dc.date.available2023-03-28T03:12:13Z
dc.date.issued2023-03-25
dc.identifier.citationDe Mesa, C. A., Mendoza, R. M., Penir, S. M. U., dela Pena, L. D., Amar, E. C., & Saloma, C. P. (2023). Genomic analysis of Vibrio harveyi strain PH1009, a potential multi-drug resistant pathogen due to acquisition of toxin genes. Heliyon, e14926. https://doi.org/10.1016/j.heliyon.2023.e14926en
dc.identifier.urihttp://hdl.handle.net/10862/6424
dc.descriptionThe following is the Supplementary data to this article:  Download .xls (8.95 MB)en
dc.description.abstractIn has increasingly been observed that viral and bacterial coinfection frequently occurs among cultured shrimp and this coinfection could exacerbate the disease phenotype. Here, we describe a newly discovered bacterial strain, Vibrio harveyi PH1009 collected from Masbate Island, Philippines that was found to be co-infecting with the White Spot Syndrome virus a sample of black tiger prawn, Penaeus monodon. The genome of V. harveyi PH1009 was sequenced, assembled, and annotated. Average Nucleotide identity calculation with Vibrio harveyi strains confirmed its taxonomic identity. It is a potential multi-drug and multi-heavy metal resistant strain based on the multiple antibiotic and heavy metal resistance determinants annotated on its genome. Two prophage regions were identified in its genome. One contained genes for Zona occludens toxin (Zot) and Accessory cholera toxin (Ace), essential toxins of toxigenic V. cholerae strains apart from CTX toxins. Pan-genome analysis of V. harveyi strains, including PH1009, revealed an “open” pan-genome for V. harveyi and a core genome mainly composed of genes necessary for growth and metabolism. Phylogenetic tree based on the core genome alignment revealed that PH1009 was closest to strains QT520, CAIM 1754, and 823tez1. Published virulence factors present on the strain QT520 suggest similar pathogenicity with PH1009. However, PH1009 Zot was not found on related strains but was present in strains HENC-01 and CAIM 148. Most unique genes found in the PH1009 strain were identified as hypothetical proteins. Further annotation showed that several of these hypothetical proteins were phage transposases, integrases, and transcription regulators, implying the role of bacteriophages in the distinct genomic features of the PH1009 genome. The PH1009 genome will serve as a valuable genomic resource for comparative genomic studies and in understanding the disease mechanism of the Vibrio harveyi species.en
dc.description.sponsorshipThis research was funded by the Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development of the Department of Science and Technology, Philippines. We acknowledge the Philippine Shrimp Pathogenomics Program members for their help in collecting, processing, and analyzing various isolates; and the Department of Science and Technology Science Education Institute for funding support to C.A.D.M. and R.M.M.en
dc.language.isoenen
dc.publisherElsevieren
dc.relation.urihttps://www.cell.com/article/S2405844023021333/pdfen
dc.subjectresistance to antibioticsen
dc.titleGenomic analysis of Vibrio harveyi strain PH1009, a potential multi-drug resistant pathogen due to acquisition of toxin genesen
dc.typeArticleen
dc.identifier.doi10.1016/j.heliyon.2023.e14926
dc.citation.volume9
dc.citation.issue4
dc.citation.spagee14926
dc.citation.journalTitleHeliyonen
dc.subject.asfagenomesen
dc.subject.asfavibriosisen
dc.subject.asfapathogensen
dc.subject.asfaBacteriaen
dc.identifier.essn2405-8440
dc.subject.scientificNameVibrio harveyien
dc.subject.scientificNamePenaeus monodonen
local.subjectAntibiotic resistanceen
local.subjectHeavy metal resistanceen
local.subjectProphageen
local.subjectVibrio harveyien
local.subjectZona occludens toxinen


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