Oligonucleotide indexing of DNA barcodes: identification of tuna and other scombrid species in food products
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[1] Manuel Manchado,et al. Evolutionary relatedness of mackerels of the genus Scomber based on complete mitochondrial genomes: strong support to the recognition of Atlantic Scomber colias and Pacific Scomber japonicus as distinct species. , 2010, Gene.
[2] G. Amato,et al. The Real maccoyii: Identifying Tuna Sushi with DNA Barcodes – Contrasting Characteristic Attributes and Genetic Distances , 2009, PloS one.
[3] Sergi Tudela,et al. A Validated Methodology for Genetic Identification of Tuna Species (Genus Thunnus) , 2009, PloS one.
[4] Mehrdad Hajibabaei,et al. iBarcode.org: web-based molecular biodiversity analysis , 2009, BMC Bioinformatics.
[5] E. González,et al. Genetic structuring and migration patterns of Atlantic bigeye tuna, Thunnus obesus (Lowe, 1839) , 2008, BMC Evolutionary Biology.
[6] L. Frézal,et al. Four years of DNA barcoding: current advances and prospects. , 2008, Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases.
[7] Jean-Charles Sanchez,et al. The Swiss Proteomics Society (SPS) was one of the first European associations to be created in the field of proteomics. , 2008, Journal of proteomics.
[8] Jewell D Washington,et al. Potential use of DNA barcodes in regulatory science: applications of the Regulatory Fish Encyclopedia. , 2008, Journal of food protection.
[9] J. Landry,et al. A universal DNA mini-barcode for biodiversity analysis , 2008, BMC Genomics.
[10] M. Nei,et al. MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0. , 2007, Molecular biology and evolution.
[11] M. T. Bottero,et al. Identification of Four Tuna Species by Means of Real-Time PCR and Melting Curve Analysis , 2007, Veterinary Research Communications.
[12] M. T. Bottero,et al. Differentiation of five tuna species by a multiplex primer-extension assay. , 2007, Journal of biotechnology.
[13] J. Mejuto,et al. Comparative phylogeography of Atlantic bluefin tuna and swordfish: the combined effects of vicariance, secondary contact, introgression, and population expansion on the regional phylogenies of two highly migratory pelagic fishes. , 2005, Molecular phylogenetics and evolution.
[14] Javier Terol,et al. Statistical validation of the identification of tuna species: bootstrap analysis of mitochondrial DNA sequences. , 2002, Journal of agricultural and food chemistry.
[15] J. Thompson,et al. The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. , 1997, Nucleic acids research.
[16] P. Brandt,et al. Identification of the species origin of highly processed meat products by mitochondrial DNA sequences. , 1995, PCR methods and applications.