PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 5, 2026Plant Disease2 citations

Development and validation of a real-time RT-qPCR assay for the detection of citrus yellow vein clearing virus

View Full Paper
FOFatima OsmanSBSohrab BodaghiRKRobert R. Krueger

Key Points

  • The aim is to develop and validate a reliable RT-qPCR assay to detect citrus yellow vein clearing virus in citrus plants.
  • Developed three RT-qPCR assays based on public sequences and high-throughput sequencing data.
  • Validated the assays for sensitivity, specificity, and diagnostic accuracy following standardized guidelines.
  • Conducted tests for robustness and reproducibility across various labs and qPCR instruments.
  • The CYVCV-4 assay showed superior performance in analytical sensitivity and diagnostic accuracy compared to other assays.
  • Demonstrated high specificity by accurately identifying infected and non-infected citrus plants.
  • Validated across multiple labs and varying conditions, ensuring reliable results for practical use.

Abstract

Citrus yellow vein clearing virus (CYVCV, Potexvirus citriflavivenae), an emerging pathogen that poses a threat to citrus production worldwide. To address this threat, three reverse transcription quantitative polymerase chain reaction (RT-qPCR) detection assays were developed and validated using all currently available public sequences and in-house high-throughput sequencing data from recent CYVCV detections in California, following guidelines for quantitative and qualitative real-time PCR experiments. Among the RT-qPCR assays tested, the CYVCV-4 outperformed others in analytical sensitivity, specificity, and diagnostic accuracy, demonstrating high amplification efficiency. The CYVCV-4 assay targets the RNA-dependent RNA polymerase gene of CYVCV and demonstrated high specificity by avoiding cross-reactivity and accurately identifying infected, non-infected, and non-target citrus pathogens. Its superior performance is attributed to optimized primer and probe design, enabling specific hybridization to the target sequence while minimizing non-specific amplification. The assay's robustness, inter-assay and intra-assay variation, and reproducibility were thoroughly validated across multiple labs, varying reaction conditions, and different qPCR instruments. Recent detections of CYVCV in California underscore the need for rapid and reliable diagnostics to protect citrus production and germplasm. The development and validation of the CYVCV-4 assay demonstrate its effectiveness through comprehensive testing, supporting its use in citrus diagnostic labs, quarantine programs, and field surveys, ultimately enhancing CYVCV management efforts. This development highlights the opportunity for plant diagnostics to adopt harmonized validation practices through frameworks like the Diagnostic Assay Validation Network, crucial for national programs, such as the National Clean Plant Network, which depend on validated assays to ensure clean plant systems and agricultural biosecurity.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Osman et al. (2026) studied this question.

synapsesocial.com/papers/698434f9f1d9ada3c1fb3b6chttps://doi.org/10.1094/pdis-10-25-2122-re
Ask AI
Helpful
Bookmark
Share
View Full Paper