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April 19, 2026Applied Biological Chemistry0 citationsOpen Access

Development of a species-specific real-time PCR assay for identifying the medicinal plant Artemisia princeps and the toxic plant Corydalis speciosa

UPUi Cheol ParkCJCheol Seong Jang

Key Points

  • The aim is to create a specific qPCR assay for accurately distinguishing between Artemisia princeps and Corydalis speciosa.
  • Developed six primer pairs targeting genetic regions within chloroplast genes.
  • Validated limits of detection and established a contamination-based cutoff Cq value.
  • Performed blind and commercial tests for accuracy and specificity.
  • All six primer pairs demonstrated high reliability with correlation coefficients greater than 0.99.
  • Assay slopes ranged from -3.12 to -3.28 and efficiencies between 101.82% and 109.47%.
  • The assay was shown to effectively differentiate between the medicinal and toxic plants.

Abstract

Abstract The medicinal herb Artemisia princeps and the poisonous plant Corydalis speciosa have a high degree of morphological similarity, which may contribute to unintentional contamination. Indeed, cases of acute toxicity have been reported in which C. speciosa was mistakenly ingested in place of A. princeps . To ensure accurate identification, a species-specific quantitative real-time PCR (qPCR) assay was developed using six primer pairs targeting single-nucleotide polymorphisms or insertion/deletion regions within chloroplast genes. The respective limits of detection were validated, and a contamination-based cutoff Cq value (0.1%) was established for assessing authenticity. All six primer pairs showed excellent performance, with correlation coefficients > 0.99, slopes of -3.12 to -3.28, and efficiencies of 101.82%–109.47%. The developed qPCR assay was verified based on blind and commercial tests for reproducibility and specificity, respectively. This qPCR assay represents a sensitive and reliable method for distinguishing similar medicinal and toxic plants, thereby contributing to improved product quality and safety.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/69e47376010ef96374d8f347https://doi.org/10.1186/s13765-026-01091-4
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