Rapid Visual Detection of Cyprinid Herpesvirus 2 Based on One-Tube RPA-CRISPR/Cas12a System

Cyprinid herpesvirus 2 (CyHV-2) is a highly lethal pathogen responsible for substantial economic losses in farmed cyprinids worldwide. However, rapid and field-deployable diagnostic tools remain limited. Here, we developed a one-tube recombinase polymerase amplification (RPA)-CRISPR/Cas12a-based fluorescence assay for the visual detection of CyHV-2. The system integrates RPA pre-amplification targeting the highly conserved helicase gene hphS, Cas12a-mediated specific recognition and collateral cleavage of a fluorophore-quencher-labeled ssDNA reporter, and visual readout under a portable blue light transilluminator. After optimizing the concentrations of primers, crRNA, Cas12a and the reaction time, the detection limit of this method reached 1 copy/μL, and it showed no cross-reaction with other common aquatic pathogens. Clinical evaluation using 100 tissue samples demonstrated 100% concordance with quantitative real-time PCR (qPCR). This method does not require expensive equipment and can be completed within approximately one hour. This RPA-CRISPR/Cas12a platform offers a rapid and specific solution for on-site CyHV-2 surveillance, especially suitable for aquaculture environments with limited resources, and is expected to have broader applications in the detection of aquatic pathogens.

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Publication Details

Journal
Veterinary Sciences
Published
2026-09-16
DOI
https://doi.org/10.3390/vetsci13090970
Primary Topic
CRISPR and Genetic Engineering
Type
article
Field-Weighted Citation Impact
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article

Rapid Visual Detection of Cyprinid Herpesvirus 2 Based on One-Tube RPA-CRISPR/Cas12a System

Yuhao Dong, Wen Zou, Jiaqi Li, Yuping Tang et al.
Veterinary Sciences
CRISPR and Genetic Engineering
article

Rapid Visual Detection of Cyprinid Herpesvirus 2 Based on One-Tube RPA-CRISPR/Cas12a System

Yuhao Dong, Wen Zou, Jiaqi Li, Yuping Tang, Yongjie Liu, Mingyang Liu
article en

Abstract

Cyprinid herpesvirus 2 (CyHV-2) is a highly lethal pathogen responsible for substantial economic losses in farmed cyprinids worldwide. However, rapid and field-deployable diagnostic tools remain limited. Here, we developed a one-tube recombinase polymerase amplification (RPA)-CRISPR/Cas12a-based fluorescence assay for the visual detection of CyHV-2. The system integrates RPA pre-amplification targeting the highly conserved helicase gene hphS, Cas12a-mediated specific recognition and collateral cleavage of a fluorophore-quencher-labeled ssDNA reporter, and visual readout under a portable blue light transilluminator. After optimizing the concentrations of primers, crRNA, Cas12a and the reaction time, the detection limit of this method reached 1 copy/μL, and it showed no cross-reaction with other common aquatic pathogens. Clinical evaluation using 100 tissue samples demonstrated 100% concordance with quantitative real-time PCR (qPCR). This method does not require expensive equipment and can be completed within approximately one hour. This RPA-CRISPR/Cas12a platform offers a rapid and specific solution for on-site CyHV-2 surveillance, especially suitable for aquaculture environments with limited resources, and is expected to have broader applications in the detection of aquatic pathogens.

Veterinary SciencesVol. 13(9)
Nanjing Agricultural University (CN)
Life below water
Openalex Percentile: Top 18%
CRISPR and Genetic Engineering
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