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Development of diagnostic SNP markers and a novel SNP genotyping assay for distinguishing opium poppies

爸爸 罂粟 罂粟科 生物 遗传学 基因分型 单核苷酸多态性 鸦片 SNP基因分型 基因型 植物 基因 生物碱 政治学 法学
作者
Miwha Chang,Joo‐Young Kim,Haeyong Lee,Eun-jung Lee,Won-Hae Lee,Sangook Moon,Sanggil Choe,Chong Min Choung
出处
期刊:Forensic Science International [Elsevier]
卷期号:339: 111416-111416 被引量:3
标识
DOI:10.1016/j.forsciint.2022.111416
摘要

The opium poppy acts as an important natural pain reliever but is also responsible for increased rates of severe drug abuse and addiction owing to its characteristic psychoactive effect. Non-medical illicit use of the poppy plant is markedly increasing worldwide, thereby highlighting the need for a robust species identification strategy. In this study, we identified SNPs within the region of two universal DNA barcodes, matK (maturase K) and the trnL-trnF (tRNA-Leu [3'exon]-tRNA-Phe [exon] intergenic spacer, that are forensically applicable for distinguishing opium poppy species based on a genetic analysis of 164 samples of family Papaveraceae obtained from locations spanning Jeolla-do and Jeju Island, Republic of Korea. A comparative analysis of the DNA barcode sequences for two narcotic types of the Papaver species (Papaver somniferum, Papaver somniferum subs. setigerum) to eight non-narcotic species revealed three unique nucleotide substitution events. Newly identified SNPs were located at position 255 of matK and at positions 305 and 306 of trnL-trnF; the narcotic species contained C, A, and T, whereas non-narcotic species contained T, G, and C at these positions. Phylogenetic analysis demonstrated that newly identified SNPs, which we named PsMAT255 and PsLF305/306, could be used to clearly differentiate between the narcotic and non-narcotic types of Papaver species based on the patterns of nucleotide variation. These results indicate that the nucleotide differences between the narcotic and non-narcotic species may influence genetic markers. We, therefore, developed a novel SNP-based allelic genotyping assay using the RT-PCR system that can reliably differentiate the narcotic type of the Papaver species. In summary, our findings suggest that the newly identified species-specific SNPs of both matK and trnL-trnF can be used as identification markers of narcotic Papaver species. Furthermore, a newly developed TaqMan allelic discrimination assay may be used as a practically applicable diagnostic method to survey several illicit narcotic specimens carrying the type-specific SNP.
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