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首页> 外文期刊>Genome >Forensic botany and forensic chemistry working together: application of plant DNA barcoding as a complement to forensic chemistry-a case study in Brazil
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Forensic botany and forensic chemistry working together: application of plant DNA barcoding as a complement to forensic chemistry-a case study in Brazil

机译:法医植物学和法医学共同努力:植物DNA条形码在法医学的补充 - 在巴西的案例研究

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摘要

Recently, Brazilian Federal Police used forensic chemistry and forensic botany techniques on a case. Two packets containing fragmented plant matter were seized and sent for forensic analysis. Forensic chemistry, the gold standard for evaluating plant material suspected to contain illicit substances, did not find illicit materials. Gas chromatography coupled mass spectrometry (GC-MS) identified thujone in the botanical material. Thujone is a chemical compound naturally found in many plant species, notably Artemisia absinthium. Because doubt remained, we next used plant DNA barcoding methods. Total DNA from plant tissue fragments was extracted and five different DNA regions were amplified, sequenced, and analyzed using plant DNA barcoding methods. Genetic analysis yielded 30 good quality sequences representing five taxa. Most specimens were identified as A. absinthium. Few studies focus on practical forensic applications of plant DNA barcoding methods using a case solved in a forensic laboratory with its difficulties and limitations. To the best of our knowledge, this is the first study to report an effective joint effort of forensic chemistry and botany techniques to assess plant material in Brazil. The availability of a new technical approach for the genetic sequencing of plant species will enhance many forensic investigations and inspire similar initiatives.
机译:最近,巴西联邦警察在案件上使用法医学和法医学植物学技术。抓住含有碎片植物物质的两个包,并送去用于法医分析。法医学,用于评估怀疑含有非法物质的植物材料的金标并没有发现非法材料。气相色谱偶联质谱(GC-MS)鉴定在植物材料中的硫穿线。 Thujone是一种在许多植物物种中自然发现的化学化合物,特别是Artemisia Absinthium。因为疑问仍然存在,我们下次使用植物DNA条形码方法。利用植物DNA条形码方法,提取来自植物组织片段的总DNA,并使用植物DNA条形码方法扩增,测序和分析五种不同的DNA区域。遗传分析产生了30个良好的质量序列,代表五个分类群。大多数标本被鉴定为A.缺苗。很少有研究专注于使用在法医实验室中解决的案例具有困难和限制的植物DNA条形码方法的实际法医应用。据我们所知,这是第一次研究法医学和植物学技术的有效共同努力,以评估巴西的植物材料。植物物种遗传测序的新技术方法的可用性将增强许多法医调查,并激发类似的举措。

著录项

  • 来源
    《Genome》 |2019年第1期|共8页
  • 作者单位

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist Chem Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist Chem Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

    Brazilian Fed Police Natl Inst Criminalist DNA Lab SAIS Quadra 7 Lote 23 BR-70610200 Brasilia DF Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;医学遗传学;
  • 关键词

    barcoding; DNA; forensic botany; forensic chemistry; plant;

    机译:条形码;DNA;法医植物学;法医学;植物;

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