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Development of a multiplex RT-RPA assay for simultaneous detection of three viruses in cucurbits.

Abstract
Begomoviruses and criniviruses, vectored by whiteflies (Bemisia tabaci), are important threats to crops worldwide. In recent years, the spread of cucurbit leaf crumple virus (CuLCrV), cucurbit yellow stunting disorder virus (CYSDV) and cucurbit chlorotic yellows virus (CCYV) on cucurbit crops has been reported to cause devastating crop losses in many regions of the world. In this study, a multiplex recombinase polymerase amplification (RPA) assay, an isothermal technique for rapid and simultaneous detection of DNA and RNA viruses CuLCrV, CYSDV and CCYV was developed. Highly specific and sensitive multiplex RPA primers for the coat protein region of these viruses were created and evaluated. The sensitivity of the multiplex RPA assay was examined using serially diluted plasmid containing the target regions. The results demonstrated that multiplex RPA primers have high sensitivity with a detection limit of a single copy of the viruses. The multiplex RPA primers were specific to the target as indicated by testing against other begomoviruses, potyviruses and an ilarvirus, and no nonspecific amplifications were noted. The primers simultaneously detected mixed infection of CCYV, CYSDV and CuLCrV in watermelon and squash crude extracts. This study is the first report of a multiplex RPA assay for simultaneous detection of mixed infection of DNA and RNA plant viruses.
AuthorsA Abdul Kader Jailani, Mathews L Paret
JournalMolecular plant pathology (Mol Plant Pathol) Vol. 24 Issue 11 Pg. 1443-1450 (11 2023) ISSN: 1364-3703 [Electronic] England
PMID37462133 (Publication Type: Journal Article, Research Support, U.S. Gov't, Non-P.H.S.)
Copyright© 2023 The Authors. Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd.
Chemical References
  • Recombinases
  • DNA
Topics
  • Animals
  • Recombinases
  • Coinfection
  • Hemiptera
  • Plant Viruses (genetics)
  • Crops, Agricultural
  • DNA

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