Construction of an individual identification panel for horses using insertion and deletion markers
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T. Ishige | T. Tozaki | K. Hirota | H. Kakoi | S. Nagata | A. Ohnuma | M. Kikuchi | Taichiro Ishige
[1] Y. Nagahama,et al. Evaluation of genetic diversity using 31 microsatellites in Miyako horses , 2023, Journal of equine science.
[2] T. Ishige,et al. Short Insertion and Deletion Discoveries via Whole-Genome Sequencing of 101 Thoroughbred Racehorses , 2023, Genes.
[3] B. Larue,et al. The effectiveness of various strategies to improve DNA analysis of formaldehyde‐damaged tissues from embalmed cadavers for human identification purposes , 2023, Journal of forensic sciences.
[4] T. Tozaki,et al. Genetic diversity analysis and parentage verification of Taishu horses using 31 microsatellites , 2022, Journal of equine science.
[5] M. McCue,et al. Genetic Variation and the Distribution of Variant Types in the Horse , 2021, Frontiers in Genetics.
[6] T. Ishige,et al. Rare and common variant discovery by whole-genome sequencing of 101 Thoroughbred racehorses , 2021, Scientific Reports.
[7] M. de Groot,et al. Standardization of a SNP panel for parentage verification and identification in the domestic cat (Felis silvestris catus) , 2021, Animal genetics.
[8] G. N. Leung,et al. A High-Throughput and Broad Spectrum Screening Method for Analysing Over 120 Drugs in Horse Urine by Liquid Chromatography-High Resolution Mass Spectrometry. , 2020, Drug testing and analysis.
[9] T. Tozaki,et al. Evaluation of recent changes in genetic variability in Japanese thoroughbred population based on a short tandem repeat parentage panel. , 2018, Animal science journal = Nihon chikusan Gakkaiho.
[10] C. Drögemüller,et al. Comprehensive characterization of horse genome variation by whole-genome sequencing of 88 horses. , 2018, Animal genetics.
[11] Ian T. Fiddes,et al. Improved reference genome for the domestic horse increases assembly contiguity and composition , 2018, Communications Biology.
[12] A. Fragkaki,et al. Challenges in detecting substances for equine anti-doping. , 2017, Drug testing and analysis.
[13] S. Bensch,et al. Individual Identification and Genetic Variation of Lions (Panthera leo) from Two Protected Areas in Nigeria , 2014, PloS one.
[14] T. Tozaki,et al. Individual Identification of Racehorses from Urine Samples Using a 26‐Plex Single‐Nucleotide Polymorphism Assay , 2013, Journal of forensic sciences.
[15] T. Tozaki,et al. Construction and validation of parentage testing for thoroughbred horses by 53 single nucleotide polymorphisms. , 2010, The Journal of veterinary medical science.
[16] J. N. MacLeod,et al. Genome Sequence, Comparative Analysis, and Population Genetics of the Domestic Horse , 2009, Science.
[17] N. Pedersen,et al. An international parentage and identification panel for the domestic cat (Felis catus) , 2007, Animal genetics.
[18] K. Marshall,et al. Power of exclusion for parentage verification and probability of match for identity in American Kennel Club breeds using 17 canine microsatellite markers. , 2004, Animal genetics.
[19] H. Kakoi,et al. DNA Typing with 17 Microsatellites for Parentage Verification of Racehorses in Japan , 2001 .
[20] T. Tozaki,et al. Population study and validation of paternity testing for Thoroughbred horses by 15 microsatellite loci. , 2001, The Journal of veterinary medical science.
[21] A. Burny,et al. Evaluation of the genetic variability of 23 bovine microsatellite markers in four Belgian cattle breeds. , 1998, Animal genetics.
[22] A Jamieson,et al. Comparisons of three probability formulae for parentage exclusion. , 1997, Animal genetics.
[23] T. Tozaki,et al. Characterization of equine microsatellites and microsatellite-linked repetitive elements (eMLREs) by efficient cloning and genotyping methods. , 2001, DNA research : an international journal for rapid publication of reports on genes and genomes.