La Trobe

Rapid genotyping of beak and feather disease virus using high-resolution DNA melt curve analysis

journal contribution
posted on 2022-06-14, 04:08 authored by Subir SarkerSubir Sarker, SA Ghorashi, JK Forwood, SR Raidal
Beak and feather disease virus (BFDV) is a significant pathogen both for wild and captive psittacine birds globally. Genotypic differentiation of BFDV isolates is crucial to establish effective control strategies for the conservation of endangered species and epidemiological investigations of disease outbreaks. The technique developed in this study is a simple, rapid and inexpensive genotyping method for BFDV using PCR and subsequent high-resolution melt (HRM) curve analysis. This was achieved using PCR amplification of the conserved Rep gene in the presence of a fluorescent DNA intercalating dye (SYTO9). HRM curve analysis of the resultant amplicon could readily differentiate between reference strain (92-SR14) and 18 other BFDV isolates used in this study. Analysis of the nucleotide sequences of the amplicon from each isolate revealed that each melt curve profile was related to a unique DNA sequence. The potential of the PCR-HRM curve analysis to differentiate inter-host genetic variation among critically endangered orange-bellied parrots, lorikeets and cockatoos was also evaluated. Phylogenetic tree topology based on partial Rep gene sequences used in this study showed that BFDV Rep gene sequence patterns were correlated with the results of HRM curve analysis. The results presented in this study indicate that this technique could be used in both clinical research and differentiation of BFDV isolates in a fraction of time without further nucleotide sequencing and provides a novel approach for the genetic screening of BFDV in clinical virology laboratories. © 2014 Elsevier B.V.

Funding

This research was funded by grants from the Australian Research Council's Discovery Projects funding scheme (Grant number: DP1095408), and a Charles Sturt University Postgraduate Research Scholarship (CSUPRS).

History

Publication Date

2014-11-01

Journal

Journal of Virological Methods

Volume

208

Pagination

9p. (p. 47-55)

Publisher

Elsevier

ISSN

0166-0934

Rights Statement

Copyright © 2014 Elsevier B.V. Published by Elsevier B.V. All rights reserved.

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