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Forensic botany: species identification of botanical trace evidence using a multigene barcoding approach

International Journal of Legal MedicinePublished 6 June 2009Open access
Gianmarco Ferri, Milena Alù, Beatrice Corradini, Giovanni Beduschi
Citations96
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TL;DR

Two chloroplast DNA regions were evaluated for their use as “barcoding” markers for plant identification in the field of forensics to create a multimarker system for species identification that could be useful throughout the plant kingdom.

Abstract

Forensic botany can provide significant supporting evidence during criminal investigations. However, it is still an underutilized field of investigation with its most common application limited to identifying specific as well as suspected illegal plants. The ubiquitous presence of plant species can be useful in forensics, but the absence of an accurate identification system remains the major obstacle to the present inability to routinely and correctly identify trace botanical evidence. Many plant materials cannot be identified and differentiated to the species level by traditional morphological characteristics when botanical specimens are degraded and lack physical features. By taking advantage of a universal barcode system, DNA sequencing, and other biomolecular techniques used routinely in forensic investigations, two chloroplast DNA regions were evaluated for their use as "barcoding" markers for plant identification in the field of forensics. We therefore investigated the forensic use of two non-coding plastid regions, psbA-trnH and trnL-trnF, to create a multimarker system for species identification that could be useful throughout the plant kingdom. The sequences from 63 plants belonging to our local flora were submitted and registered on the GenBank database. Sequence comparison to set up the level of identification (species, genus, or family) through Blast algorithms allowed us to assess the suitability of this method. The results confirmed the effectiveness of our botanic universal multimarker assay in forensic investigations.

Keywords

Biochemistry, Genetics and Molecular Biology