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Animal genetics1994; 25(1); 62;

Characterization of seven new horse microsatellites: HMS1, HMS2, HMS3, HMS5, HMS6, HMS7 and HMS8.

Abstract: No abstract available
Publication Date: 1994-02-01 PubMed ID: 8161034
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  • Journal Article
  • Research Support
  • Non-U.S. Gov't

Cite This Article

APA
Guérin G, Bertaud M, Amigues Y. (1994). Characterization of seven new horse microsatellites: HMS1, HMS2, HMS3, HMS5, HMS6, HMS7 and HMS8. Anim Genet, 25(1), 62.

Publication

ISSN: 0268-9146
NlmUniqueID: 8605704
Country: England
Language: English
Volume: 25
Issue: 1
Pages: 62

Researcher Affiliations

Guérin, G
  • Laboratoire de Génétique biochimique et de Cytogénétique, INRA-CRJ, Jouy-en-Josas, France.
Bertaud, M
    Amigues, Y

      MeSH Terms

      • Animals
      • Base Sequence
      • Chromosome Mapping / veterinary
      • DNA Primers
      • DNA, Satellite / genetics
      • Gene Frequency
      • Horses / genetics
      • Molecular Sequence Data

      Citations

      This article has been cited 14 times.
      1. Yordanov G, Mehandjyiski I, Palova N, Atsenova N, Neov B, Radoslavov G, Hristov P. Genetic Diversity and Structure of the Main Danubian Horse Paternal Genealogical Lineages Based on Microsatellite Genotyping. Vet Sci 2022 Jul 1;9(7).
        doi: 10.3390/vetsci9070333pubmed: 35878350google scholar: lookup
      2. King SRB, Schoenecker KA, Fike JA, Oyler-McCance SJ. Long-term persistence of horse fecal DNA in the environment makes equids particularly good candidates for noninvasive sampling. Ecol Evol 2018 Apr;8(8):4053-4064.
        doi: 10.1002/ece3.3956pubmed: 29721279google scholar: lookup
      3. Khaire D, Atkulwar A, Farah S, Baig M. Low genetic diversity of the endangered Indian wild ass Equus hemionus khur, as revealed by microsatellite analyses. J Genet 2017 Jun 27;96(2):e31-e34.
        doi: 10.1007/s12041-017-0784-9pubmed: 28674219google scholar: lookup
      4. Dimsoski P. Genotyping horse epithelial cells from fecal matter by isolation of polymerase chain reaction products. Croat Med J 2017 Jun 14;58(3):239-249.
        doi: 10.3325/cmj.2017.58.239pubmed: 28613041google scholar: lookup
      5. Lopes MS, Mendonça D, Rojer H, Cabral V, Bettencourt SX, da Câmara Machado A. Morphological and genetic characterization of an emerging Azorean horse breed: the Terceira Pony. Front Genet 2015;6:62.
        doi: 10.3389/fgene.2015.00062pubmed: 25774165google scholar: lookup
      6. Warmuth V, Eriksson A, Bower MA, Cañon J, Cothran G, Distl O, Glowatzki-Mullis ML, Hunt H, Luís C, do Mar Oom M, Yupanqui IT, Ząbek T, Manica A. European domestic horses originated in two holocene refugia. PLoS One 2011 Mar 30;6(3):e18194.
        doi: 10.1371/journal.pone.0018194pubmed: 21479181google scholar: lookup
      7. Behl R, Behl J, Gupta N, Gupta SC, Ahlawat SP, Ragnekar M, Ahmed Z. Genetic characterization of Zanskari breed of horse. J Genet 2006 Dec;85(3):199-203.
        doi: 10.1007/BF02935331pubmed: 17406094google scholar: lookup
      8. Iwańczyk E, Juras R, Cholewiński G, Cothran EG. Genetic structure and phylogenetic relationships of the Polish Heavy horse. J Appl Genet 2006;47(4):353-9.
        doi: 10.1007/BF03194645pubmed: 17132900google scholar: lookup
      9. Lee SY, Cho GJ. Parentage testing of Thoroughbred horse in Korea using microsatellite DNA typing. J Vet Sci 2006 Mar;7(1):63-7.
        doi: 10.4142/jvs.2006.7.1.63pubmed: 16434852google scholar: lookup
      10. Lindgren G, Sandberg K, Persson H, Marklund S, Breen M, Sandgren B, Carlstén J, Ellegren H. A primary male autosomal linkage map of the horse genome. Genome Res 1998 Sep;8(9):951-66.
        doi: 10.1101/gr.8.9.951pubmed: 9750194google scholar: lookup
      11. Breen M, Lindgren G, Binns MM, Norman J, Irvin Z, Bell K, Sandberg K, Ellegren H. Genetical and physical assignments of equine microsatellites--first integration of anchored markers in horse genome mapping. Mamm Genome 1997 Apr;8(4):267-73.
        doi: 10.1007/s003359900407pubmed: 9096108google scholar: lookup
      12. Jlassi M, Dhifalli I, Ouled Ahmed H, Lasfar F, El Gtari M, Jemmali B. Genetic Characterization of the Arabian Horse Population in Tunisia Using Microsatellites. Life (Basel) 2025 Dec 16;15(12).
        doi: 10.3390/life15121925pubmed: 41465863google scholar: lookup
      13. Yordanov G, Yordanov T, Mehandjyiski I, Radoslavov G, Salkova D, Hristov P. Population Structure and Genetic Diversity Among Shagya Arabian Horse Genealogical Lineages in Bulgaria Based on Microsatellite Genotyping. Vet Sci 2025 Aug 19;12(8).
        doi: 10.3390/vetsci12080776pubmed: 40872726google scholar: lookup
      14. Paul S, Shahar N, Seifan M, Bar-David S. An experimental design for obtaining DNA of a target species and its diet from a single non-invasive genetic protocol. Ecol Evol 2023 Oct;13(10):e10616.
        doi: 10.1002/ece3.10616pubmed: 37877104google scholar: lookup