Eun-Mi Hwang, Kyu-Sik Jeong, Seong Yeon Yoo, Jihyun Kim, Sanggil Choe, Joo-Young Kim
{"title":"比较转录组学分析为了解威廉希尔手机版的麦司卡林生物合成提供了新的视角。","authors":"Eun-Mi Hwang, Kyu-Sik Jeong, Seong Yeon Yoo, Jihyun Kim, Sanggil Choe, Joo-Young Kim","doi":"10.1111/1556-4029.15679","DOIUrl":null,"url":null,"abstract":"<p><p>Lophophora williamsii, known for mescaline synthesis, has raised legal and ethical considerations. However, L. williamsii specimens that do not contain mescaline have been recently identified, necessitating the development of techniques to differentiate between mescaline-positive and mescaline-negative groups. Genetic markers have been explored to differentiate these specimens, complementing gas chromatography/mass spectrometry analysis. Here, we used a single-molecule real-time polymerase chain reaction to generate a full-length L. williamsii transcriptome and elucidate the mechanisms underlying mescaline biosynthesis. In total, 2,839,819 base pairs of highly accurate long reads were obtained using PacBio Iso-Seq and 70,945 unigenes were obtained through transcriptome sequencing. Known genes involved in the mescaline biosynthetic pathway were confirmed in the L. williamsii transcriptome, including 6 genes encoding tyrosine decarboxylases, 1 encoding tyrosine/DOPA decarboxylase, 215 encoding O-methyltransferases, and 129 encoding hydroxylases. Gene Ontology analysis revealed 2903 biological processes, 695 cellular components, and 1766 molecular functions. The Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis revealed two biosynthetic pathways, namely, phenylpropanoid and isoquinoline biosynthesis, associated with mescaline biosynthesis. To investigate genetic differences based on the presence of mescaline, Illumina Nova sequencing was conducted. The expression levels of genes involved in mescaline biosynthesis were compared to establish a candidate gene pool based on the presence of mescaline. Subsequently, functional annotation was performed on the identified candidate genes using a genetic database derived from PacBio sequencing. These findings underscore the need for a re-evaluation of forensic methods and legal regulations concerning newly identified L. williamsii specimens.</p>","PeriodicalId":94080,"journal":{"name":"Journal of forensic sciences","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-11-26","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Comparative transcriptomic analysis provides novel insights into mescaline biosynthesis by Lophophora williamsii.\",\"authors\":\"Eun-Mi Hwang, Kyu-Sik Jeong, Seong Yeon Yoo, Jihyun Kim, Sanggil Choe, Joo-Young Kim\",\"doi\":\"10.1111/1556-4029.15679\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Lophophora williamsii, known for mescaline synthesis, has raised legal and ethical considerations. However, L. williamsii specimens that do not contain mescaline have been recently identified, necessitating the development of techniques to differentiate between mescaline-positive and mescaline-negative groups. Genetic markers have been explored to differentiate these specimens, complementing gas chromatography/mass spectrometry analysis. Here, we used a single-molecule real-time polymerase chain reaction to generate a full-length L. williamsii transcriptome and elucidate the mechanisms underlying mescaline biosynthesis. In total, 2,839,819 base pairs of highly accurate long reads were obtained using PacBio Iso-Seq and 70,945 unigenes were obtained through transcriptome sequencing. Known genes involved in the mescaline biosynthetic pathway were confirmed in the L. williamsii transcriptome, including 6 genes encoding tyrosine decarboxylases, 1 encoding tyrosine/DOPA decarboxylase, 215 encoding O-methyltransferases, and 129 encoding hydroxylases. 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引用次数: 0
摘要
Lophophora williamsii 以合成麦司卡林而闻名,这引起了法律和伦理方面的考虑。不过,最近发现了不含麦司卡林的 L. williamsii 标本,因此有必要开发区分麦司卡林阳性和麦司卡林阴性群体的技术。基因标记被用来区分这些标本,作为气相色谱/质谱分析的补充。在这里,我们使用单分子实时聚合酶链反应生成了全长的 L. williamsii 转录组,并阐明了麦司卡林生物合成的内在机制。我们使用 PacBio Iso-Seq 获得了 2,839,819 个碱基对的高精度长读数,并通过转录组测序获得了 70,945 个单基因。在 L. williamsii 的转录组中确认了参与麦司卡林生物合成途径的已知基因,包括 6 个编码酪氨酸脱羧酶的基因、1 个编码酪氨酸/多巴胺脱羧酶的基因、215 个编码 O-甲基转移酶的基因和 129 个编码羟化酶的基因。基因本体分析显示了 2903 个生物过程、695 个细胞组分和 1766 个分子功能。京都基因和基因组百科全书(KEGG)通路分析显示,与麦司卡林生物合成相关的生物合成通路有两条,即苯丙类化合物和异喹啉的生物合成。为了研究麦司卡林存在的遗传差异,进行了 Illumina Nova 测序。通过比较参与麦司卡林生物合成的基因的表达水平,根据麦司卡林的存在情况建立了候选基因库。随后,利用 PacBio 测序得到的基因数据库对确定的候选基因进行了功能注释。这些发现突出表明,有必要重新评估有关新鉴定的 L. williamsii 标本的法医方法和法律规定。
Comparative transcriptomic analysis provides novel insights into mescaline biosynthesis by Lophophora williamsii.
Lophophora williamsii, known for mescaline synthesis, has raised legal and ethical considerations. However, L. williamsii specimens that do not contain mescaline have been recently identified, necessitating the development of techniques to differentiate between mescaline-positive and mescaline-negative groups. Genetic markers have been explored to differentiate these specimens, complementing gas chromatography/mass spectrometry analysis. Here, we used a single-molecule real-time polymerase chain reaction to generate a full-length L. williamsii transcriptome and elucidate the mechanisms underlying mescaline biosynthesis. In total, 2,839,819 base pairs of highly accurate long reads were obtained using PacBio Iso-Seq and 70,945 unigenes were obtained through transcriptome sequencing. Known genes involved in the mescaline biosynthetic pathway were confirmed in the L. williamsii transcriptome, including 6 genes encoding tyrosine decarboxylases, 1 encoding tyrosine/DOPA decarboxylase, 215 encoding O-methyltransferases, and 129 encoding hydroxylases. Gene Ontology analysis revealed 2903 biological processes, 695 cellular components, and 1766 molecular functions. The Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis revealed two biosynthetic pathways, namely, phenylpropanoid and isoquinoline biosynthesis, associated with mescaline biosynthesis. To investigate genetic differences based on the presence of mescaline, Illumina Nova sequencing was conducted. The expression levels of genes involved in mescaline biosynthesis were compared to establish a candidate gene pool based on the presence of mescaline. Subsequently, functional annotation was performed on the identified candidate genes using a genetic database derived from PacBio sequencing. These findings underscore the need for a re-evaluation of forensic methods and legal regulations concerning newly identified L. williamsii specimens.