Forensic Science International: Genetics
Volume 1, Issue 3 , Pages 262-266, December 2007

DNA internal standard for the quantitative determination of hallucinogenic plants in plant mixtures

  • Pino Luciano

      Affiliations

    • Department of Plant Biology and Centre of Excellence CEBIOVEM, University of Turin, Viale P.A. Mattioli 25, 10125 Turin, Italy
  • ,
  • Cinzia M. Bertea

      Affiliations

    • Department of Plant Biology and Centre of Excellence CEBIOVEM, University of Turin, Viale P.A. Mattioli 25, 10125 Turin, Italy
  • ,
  • Giovanni Temporale

      Affiliations

    • Central Direction of Anticrime Police, Interregional Department of Scientific Police, Piedmont and Aosta Valley, Questura di Torino, Corso Vinzaglio 10, 10136 Turin, Italy
  • ,
  • Massimo E. Maffei

      Affiliations

    • Department of Plant Biology and Centre of Excellence CEBIOVEM, University of Turin, Viale P.A. Mattioli 25, 10125 Turin, Italy
    • Corresponding Author InformationCorresponding author. Tel.: +39 011 6705967; fax: +39 011 2365967.

Received 5 April 2007; received in revised form 30 May 2007; accepted 9 June 2007. published online 19 July 2007.

Abstract 

Here, we show a new, simple, and rapid SYBR Green-based Real-Time PCR assay for the quantification of hallucinogenic plants in plant mixtures. As a test plant, Salvia divinorum Epling & Játiva-M., a perennial herb belonging to the Lamiaceae family able to induce hallucinations, changes in perception, or other psychologically induced changes with similar potency as LSD, was used. The method was tested on seven mixtures 100/0%, 80/20%, 60/40%, 40/60%, 20/80%, 10/90%, 0/100% (w/w) S. divinorum versus a non-hallucinogenic plant, Salvia officinalis. Total DNA was extracted from samples and quantified by Real-Time PCR. Arabidopsis thaliana genomic DNA was added, as internal standard, at the beginning of each extraction. A new formula for the interpretation of Real-Time PCR data, based on the relative quantification of DNA extracted from mixture versus a reference DNA extracted from a known amount of pure S. divinorum, was developed. The results of this work show an almost perfect correspondence between Real-Time PCR-calculated weight and the weight estimated by an analytical weighted method, proving the effectiveness of this method for the quantitative analysis of a given species in a plant mixture.

Keywords: Salvia divinorum Epling & Játiva-M., Lamiaceae, Diviner's sage, Quantitative Real-Time PCR, SYBR-Green, DNA internal standard

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PII: S1872-4973(07)00098-1

doi:10.1016/j.fsigen.2007.06.003

Forensic Science International: Genetics
Volume 1, Issue 3 , Pages 262-266, December 2007