Literature DB >> 34101853

Rapid genotyping of tilapia lake virus (TiLV) using Nanopore sequencing.

Jerome Delamare-Deboutteville1, Suwimon Taengphu2, Han Ming Gan3, Pattanapon Kayansamruaj4, Partho Pratim Debnath5, Andrew Barnes6, Shaun Wilkinson7,8, Minami Kawasaki6, Chadag Vishnumurthy Mohan1, Saengchan Senapin2,9, Ha Thanh Dong10.   

Abstract

Infectious diseases represent one of the major challenges to sustainable aquaculture production. Rapid, accurate diagnosis and genotyping of emerging pathogens during early-suspected disease cases is critical to facilitate timely response to deploy adequate control measures and prevent or reduce spread. Currently, most laboratories use PCR to amplify partial pathogen genomic regions, occasionally combined with sequencing of PCR amplicon(s) using conventional Sanger sequencing services for confirmatory diagnosis. The main limitation of this approach is the lengthy turnaround time. Here, we report an innovative approach using a previously developed specific PCR assay for pathogen diagnosis combined with a new Oxford Nanopore Technologies (ONT)-based amplicon sequencing method for pathogen genotyping. Using fish clinical samples, we applied this approach for the rapid confirmation of PCR amplicon sequences identity and genotyping of tilapia lake virus (TiLV), a disease-causing virus affecting tilapia aquaculture globally. The consensus sequences obtained after polishing exhibit strikingly high identity to references derived by Illumina and Sanger methods (99.83%-100%). This study suggests that ONT-based amplicon sequencing is a promising platform to deploy in regional aquatic animal health diagnostic laboratories in low- and medium-income countries, for fast identification and genotyping of emerging infectious pathogens from field samples within a single day.
© 2021 The Authors. Journal of Fish Diseases published by John Wiley & Sons Ltd.

Entities:  

Keywords:  Nile tilapia (Oreochromis niloticus); Oxford Nanopore Technologies; Red tilapia (Oreochromis spp.); Tilapia lake virus; bioinformatics and genotyping; semi-nested RT-PCR

Year:  2021        PMID: 34101853     DOI: 10.1111/jfd.13467

Source DB:  PubMed          Journal:  J Fish Dis        ISSN: 0140-7775            Impact factor:   2.767


  1 in total

1.  Concentration and quantification of Tilapia tilapinevirus from water using a simple iron flocculation coupled with probe-based RT-qPCR.

Authors:  Suwimon Taengphu; Pattanapon Kayansamruaj; Yasuhiko Kawato; Jerome Delamare-Deboutteville; Chadag Vishnumurthy Mohan; Ha Thanh Dong; Saengchan Senapin
Journal:  PeerJ       Date:  2022-04-18       Impact factor: 3.061

  1 in total

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