Related Experiment Video
Updated: May 3, 2026

DNA-based Fish Species Identification Protocol
Published on: April 28, 2010
Applications of DNA barcoding to fish landings: authentication and diversity assessment
Alba Ardura1, Serge Planes2, Eva Garcia-Vazquez1
1University of Oviedo, Department of Functional Biology. C/ Julian Claveria s/n. 33006-Oviedo, Spain.
Abstract:
DNA barcoding methodologies are being increasingly applied not only for scientific purposes but also for diverse real-life uses. Fisheries assessment is a potential niche for DNA barcoding, which serves for species authentication and may also be used for estimating within-population genetic diversity of exploited fish. Analysis of single-sequence barcodes has been proposed as a shortcut for measuring diversity in addition to the original purpose of species identification. Here we explore the relative utility of different mitochondrial sequences (12S rDNA, COI, cyt b, and D-Loop) for application as barcodes in fisheries sciences, using as case studies two marine and two freshwater catches of contrasting diversity levels. Ambiguous catch identification from COI and cyt b was observed. In some cases this could be attributed to duplicated names in databases, but in others it could be due to mitochondrial introgression between closely related species that may obscure species assignation from mtDNA. This last problem could be solved using a combination of mitochondrial and nuclear genes. We suggest to simultaneously analyze one conserved and one more polymorphic gene to identify species and assess diversity in fish catches.
More Related Videos
08:55Author Spotlight: Harnessing DNA Barcode Technology to Enhance the Efficiency of Medicinal Plant Identification
Published on: November 1, 2024
06:22The Floating Lab: Standard Operational Procedure for Collecting and Filtering Seawater Samples from Operating Ferries for Environmental DNA Analysis
Published on: August 1, 2025
Related Concept Videos
Applications of Molecular Taxonomy
Modern Molecular Taxonomy
Evolutionary Relationships through Genome Comparisons
FISH - Fluorescent In-situ Hybridization