Potential phages against Vibrio alginolyticus from oyster and clams

Background and Objective: Vibriosis is a disease that causes massive mortality in aquaculture farming in Asia which is commonly controlled by antibiotics. Increasing Antimicrobial Resistance (AMR) in Vibrio species may lead to bacteriophage therapy as an option for fish farmers to treat vibriosis. T...

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Main Authors: Mat Zin, Ain-Auzureen, Ying, Lee Rui, Peng, Tan Li, Mohamed, Maizan, Mohamad, Nora Faten Afifah, Hamid, Nur Hidayahanum, CheWan Zal, CheWan Salma, Samsuddin, Ahmad Syazwan, Hamdan, Ruhil Hayati
Format: Article
Language:English
Published: 2024
Online Access:http://psasir.upm.edu.my/id/eprint/117635/
http://psasir.upm.edu.my/id/eprint/117635/1/117635.pdf
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author Mat Zin, Ain-Auzureen
Ying, Lee Rui
Peng, Tan Li
Mohamed, Maizan
Mohamad, Nora Faten Afifah
Hamid, Nur Hidayahanum
CheWan Zal, CheWan Salma
Samsuddin, Ahmad Syazwan
Hamdan, Ruhil Hayati
author_facet Mat Zin, Ain-Auzureen
Ying, Lee Rui
Peng, Tan Li
Mohamed, Maizan
Mohamad, Nora Faten Afifah
Hamid, Nur Hidayahanum
CheWan Zal, CheWan Salma
Samsuddin, Ahmad Syazwan
Hamdan, Ruhil Hayati
author_sort Mat Zin, Ain-Auzureen
building UPM Institutional Repository
collection Online Access
description Background and Objective: Vibriosis is a disease that causes massive mortality in aquaculture farming in Asia which is commonly controlled by antibiotics. Increasing Antimicrobial Resistance (AMR) in Vibrio species may lead to bacteriophage therapy as an option for fish farmers to treat vibriosis. The objective of this study was to isolate and identify bacteriophage from bean clam, carpet clam and wild oysters against Vibrio alginolyticus strains. Materials and Methods: The 30 bivalve samples including 10 each for bean clams, carpet clams and wild oysters were purchased from local and street wet markets around Pengkalan Chepa and Bachok, Kelantan. Spot tests and plaque formation were done to isolate the phages from bivalve molluscs. Then, the isolated phages were identified morphologically using a Transmission Electron Microscope (TEM). Results: The two isolates of phages were isolated from white oysters (VA-WO1) and carpet clams (VA-CC1). Unfortunately, only the VA-WO1 phage was further studied due to technical errors. Morphologically the bacteriophage identified using TEM belongs to the Siphoviridae family. The VA-WOI phage only targeted specific strains of Vibrio alginolyticus (K5). Conclusion: Further studies are needed to isolate other phages for effective vibriosis treatment. Thus, the obtained phages will further characterize the molecular and genome sequences examination. Phages have a huge potential to become supportive tools development of antibiotic treatment.
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institution Universiti Putra Malaysia
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language English
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spelling upm-1176352025-06-03T06:44:14Z http://psasir.upm.edu.my/id/eprint/117635/ Potential phages against Vibrio alginolyticus from oyster and clams Mat Zin, Ain-Auzureen Ying, Lee Rui Peng, Tan Li Mohamed, Maizan Mohamad, Nora Faten Afifah Hamid, Nur Hidayahanum CheWan Zal, CheWan Salma Samsuddin, Ahmad Syazwan Hamdan, Ruhil Hayati Background and Objective: Vibriosis is a disease that causes massive mortality in aquaculture farming in Asia which is commonly controlled by antibiotics. Increasing Antimicrobial Resistance (AMR) in Vibrio species may lead to bacteriophage therapy as an option for fish farmers to treat vibriosis. The objective of this study was to isolate and identify bacteriophage from bean clam, carpet clam and wild oysters against Vibrio alginolyticus strains. Materials and Methods: The 30 bivalve samples including 10 each for bean clams, carpet clams and wild oysters were purchased from local and street wet markets around Pengkalan Chepa and Bachok, Kelantan. Spot tests and plaque formation were done to isolate the phages from bivalve molluscs. Then, the isolated phages were identified morphologically using a Transmission Electron Microscope (TEM). Results: The two isolates of phages were isolated from white oysters (VA-WO1) and carpet clams (VA-CC1). Unfortunately, only the VA-WO1 phage was further studied due to technical errors. Morphologically the bacteriophage identified using TEM belongs to the Siphoviridae family. The VA-WOI phage only targeted specific strains of Vibrio alginolyticus (K5). Conclusion: Further studies are needed to isolate other phages for effective vibriosis treatment. Thus, the obtained phages will further characterize the molecular and genome sequences examination. Phages have a huge potential to become supportive tools development of antibiotic treatment. 2024 Article PeerReviewed text en cc_by_4 http://psasir.upm.edu.my/id/eprint/117635/1/117635.pdf Mat Zin, Ain-Auzureen and Ying, Lee Rui and Peng, Tan Li and Mohamed, Maizan and Mohamad, Nora Faten Afifah and Hamid, Nur Hidayahanum and CheWan Zal, CheWan Salma and Samsuddin, Ahmad Syazwan and Hamdan, Ruhil Hayati (2024) Potential phages against Vibrio alginolyticus from oyster and clams. Current Research in Bacteriology, 17. pp. 1-7. ISSN 1994-5426 https://scialert.net/abstract/?doi=crb.2024.1.7 10.3923/crb.2024.1.7
spellingShingle Mat Zin, Ain-Auzureen
Ying, Lee Rui
Peng, Tan Li
Mohamed, Maizan
Mohamad, Nora Faten Afifah
Hamid, Nur Hidayahanum
CheWan Zal, CheWan Salma
Samsuddin, Ahmad Syazwan
Hamdan, Ruhil Hayati
Potential phages against Vibrio alginolyticus from oyster and clams
title Potential phages against Vibrio alginolyticus from oyster and clams
title_full Potential phages against Vibrio alginolyticus from oyster and clams
title_fullStr Potential phages against Vibrio alginolyticus from oyster and clams
title_full_unstemmed Potential phages against Vibrio alginolyticus from oyster and clams
title_short Potential phages against Vibrio alginolyticus from oyster and clams
title_sort potential phages against vibrio alginolyticus from oyster and clams
url http://psasir.upm.edu.my/id/eprint/117635/
http://psasir.upm.edu.my/id/eprint/117635/
http://psasir.upm.edu.my/id/eprint/117635/
http://psasir.upm.edu.my/id/eprint/117635/1/117635.pdf