Timber DNA release using focused ultrasound extraction (FUSE) for genetic species identification

IF 3.2 2区 医学 Q2 GENETICS & HEREDITY
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Abstract

The use of genetic data for timber species and population assignment is a powerful tool for combating the illegal timber trade, but the challenges of extracting DNA from timber have prevented the routine use of genetics as a supply chain management tool. To overcome these challenges, we explored the feasibility of focused ultrasound extraction (FUSE) for rapid DNA release from timber. Using high-pressure ultrasound pulses, FUSE generates a cavitation bubble cloud that disintegrates samples into acellular debris, resulting in the mechanical release of DNA. In this work, FUSE was applied to white oak (Quercus alba) timber shavings to test the feasibility of using FUSE for timber DNA extraction for the first time. Results showed that FUSE processing disintegrated the tissue samples and released significant quantities of DNA. After five minutes of tissue processing DNA quantities of 0.21 ± 0.02 ng/mg, 0.99 ± 0.32 ng/mg, and 0.14 ± 0.01 ng/mg, were released from medium, coarse, and combination shaving groups, respectively. Amplification and sequencing of regions within the matK and rbcL chloroplast genes confirmed that the quality of DNA prepared with FUSE was suitable for PCR and short-read sequencing applications. Overall, these results show that FUSE can serve as a DNA sample preparation method capable of releasing high-quality DNA from timber in a fraction of the time required by conventional extraction methods. Based on the improved efficiency of DNA release with FUSE, ongoing work aims to develop this technology into portable systems that can be used to rapidly prepare timber samples for genetic species identification.

利用聚焦超声提取(FUSE)技术释放木材 DNA,进行遗传物种鉴定
利用基因数据进行木材物种和种群分配是打击非法木材贸易的有力工具,但从木材中提取 DNA 所面临的挑战阻碍了遗传学作为供应链管理工具的常规应用。为了克服这些挑战,我们探索了聚焦超声提取(FUSE)从木材中快速释放 DNA 的可行性。FUSE 利用高压超声脉冲产生空化气泡云,将样本分解成无细胞碎片,从而以机械方式释放 DNA。在这项工作中,FUSE 被应用于白橡木(Quercus alba)木材刨花,首次测试了使用 FUSE 提取木材 DNA 的可行性。结果表明,FUSE 处理能分解组织样本并释放出大量 DNA。经过 5 分钟的组织处理后,中、粗和混合木屑组释放的 DNA 数量分别为 0.21 ± 0.02 纳克/毫克、0.99 ± 0.32 纳克/毫克和 0.14 ± 0.01 纳克/毫克。对 matK 和 rbcL 叶绿体基因内的区域进行的扩增和测序证实,用 FUSE 制备的 DNA 质量适合 PCR 和短线程测序应用。总之,这些结果表明,FUSE 可以作为一种 DNA 样品制备方法,只需传统提取方法所需的一小部分时间,就能从木材中释放出高质量的 DNA。基于 FUSE 提高的 DNA 释放效率,正在进行的工作旨在将该技术开发成便携式系统,用于快速制备木材样本,进行遗传物种鉴定。
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来源期刊
CiteScore
7.50
自引率
32.30%
发文量
132
审稿时长
11.3 weeks
期刊介绍: Forensic Science International: Genetics is the premier journal in the field of Forensic Genetics. This branch of Forensic Science can be defined as the application of genetics to human and non-human material (in the sense of a science with the purpose of studying inherited characteristics for the analysis of inter- and intra-specific variations in populations) for the resolution of legal conflicts. The scope of the journal includes: Forensic applications of human polymorphism. Testing of paternity and other family relationships, immigration cases, typing of biological stains and tissues from criminal casework, identification of human remains by DNA testing methodologies. Description of human polymorphisms of forensic interest, with special interest in DNA polymorphisms. Autosomal DNA polymorphisms, mini- and microsatellites (or short tandem repeats, STRs), single nucleotide polymorphisms (SNPs), X and Y chromosome polymorphisms, mtDNA polymorphisms, and any other type of DNA variation with potential forensic applications. Non-human DNA polymorphisms for crime scene investigation. Population genetics of human polymorphisms of forensic interest. Population data, especially from DNA polymorphisms of interest for the solution of forensic problems. DNA typing methodologies and strategies. Biostatistical methods in forensic genetics. Evaluation of DNA evidence in forensic problems (such as paternity or immigration cases, criminal casework, identification), classical and new statistical approaches. Standards in forensic genetics. Recommendations of regulatory bodies concerning methods, markers, interpretation or strategies or proposals for procedural or technical standards. Quality control. Quality control and quality assurance strategies, proficiency testing for DNA typing methodologies. Criminal DNA databases. Technical, legal and statistical issues. General ethical and legal issues related to forensic genetics.
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