开发两种快速基因分型测定法,用于区分大麻和大麻。

Ya-Chih Cheng, Rachel Houston
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摘要

美国大麻种植的合法化促使人们需要可靠的方法来区分合法大麻和非法大麻。基因分析已成为一种强大的工具,在特定方面超越了传统的化学方法,如分析痕量、陈年样本和样本的不同部分。大麻素合成酶基因的遗传差异为精确确定作物类型带来了希望,尤其是对四氢大麻酚酸合成酶(THCAS)、大麻二醇酸合成酶(CBDAS)和大麻色氨酸合成酶(CBCAS)等基因的研究。然而,以往的研究在开发鉴别性遗传标记方面面临着一些挑战,包括样本量有限、合成酶基因之间的高度相似性以及伪合成酶基因的存在。一项利用新一代测序技术(NGS)进行的综合研究引入了基于 THCAS、CBDAS 和 THCAS 伪基因的区分流程图。为了缩小 NGS 与犯罪实验室实际要求之间的差距,开发了两种快速基因分型检测方法:基于 CE 的 SNaPshot™ 检测方法和 TaqMan™ 实时 PCR 检测方法。虽然 SNaPshot™ 分析法能有效区分各种大麻和大麻类型,但对于四氢大麻酚含量接近 0.3% 法定阈值(0.3%-1%)的大麻样本,其区分度有限。TaqMan™ qPCR SNP 基因分型检测法能更快地得出结果,是犯罪实验室的有效选择。不过,这种方法与 SNaPshot™ 分析法具有相同的局限性,在区分食用大麻籽样本方面存在额外的挑战,而且它不能提供额外的 CBD 信息。该研究还强调了一个 THCAS 伪基因的两个变体对化学型确定的影响,强调了精确遗传分析对准确划分大麻品种的必要性。
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The development of two fast genotyping assays for the differentiation of hemp from marijuana.

The legalization of hemp cultivation in the United States has raised the need for reliable methods to distinguish between legal hemp and illegal marijuana. Genetic analysis has emerged as a powerful tool, surpassing traditional chemical methods in specific aspects, such as analyzing trace amounts, aged samples, and different parts of the sample. Genetic differences in cannabinoid synthase genes offer promise for precise crop type determination, particularly focusing on genes like tetrahydrocannabinolic acid synthase (THCAS), cannabidiolic acid synthase (CBDAS), and cannabichromenic acid synthase (CBCAS). However, previous research faced several challenges in developing discriminatory genetic markers, including limited sample sizes, high similarity between the synthase genes, and the presence of pseudo synthase genes. A comprehensive study using Next-Generation Sequencing (NGS) introduced a differentiation flowchart based on THCAS, CBDAS, and THCAS pseudogenes. To bridge the gap between NGS and the practical requirements of crime laboratories, two rapid genotyping assays were developed: a CE-based SNaPshot™ assay and a TaqMan™ real-time PCR assay. While the SNaPshot™ assay effectively differentiated various hemp and marijuana types, differentiation was limited with marijuana samples containing THC% close to the 0.3% legal threshold (0.3%-1%). The TaqMan™ qPCR SNP genotyping assay provided quicker results, making it an efficient choice for crime laboratories. However, this method had the same limitations as the SNaPshot™ assay with addtional challenges in differentiating edible hemp seed samples, and it did not provide additional CBD information. The study also highlighted the influence of two variants of one THCAS pseudogene on chemotype determination, emphasizing the necessity for precise genetic analysis for accurate categorization of cannabis varieties.

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