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Journal of reproduction and fertility1973; 32(3); 441-445; doi: 10.1530/jrf.0.0320441

Development of the germ cells in the ovary of the mule and hinny.

Abstract: No abstract available
Publication Date: 1973-03-01 PubMed ID: 4692339DOI: 10.1530/jrf.0.0320441Google Scholar: Lookup
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Cite This Article

APA
Taylor MJ, Short RV. (1973). Development of the germ cells in the ovary of the mule and hinny. J Reprod Fertil, 32(3), 441-445. https://doi.org/10.1530/jrf.0.0320441

Publication

ISSN: 0022-4251
NlmUniqueID: 0376367
Country: England
Language: English
Volume: 32
Issue: 3
Pages: 441-445

Researcher Affiliations

Taylor, M J
    Short, R V

      MeSH Terms

      • Animals
      • Animals, Newborn
      • Chromosomes
      • Female
      • Fertilization
      • Horses
      • Hybridization, Genetic
      • Infertility, Female / etiology
      • Male
      • Meiosis
      • Mitosis
      • Ovarian Follicle / physiopathology
      • Ovary / embryology
      • Ovary / growth & development
      • Ovum / physiology
      • Perissodactyla / growth & development

      Citations

      This article has been cited 10 times.
      1. Han H, Wang A, Liu L, Zhao G, Su J, Wang B, Li Y, Zhang J, Wu B, Sun W, Hu S, Li S, Zhao L, Li X. Testicular Characteristics and the Block to Spermatogenesis in Mature Hinny. Asian-Australas J Anim Sci 2016 Jun;29(6):793-800.
        doi: 10.5713/ajas.15.0670pubmed: 26954128google scholar: lookup
      2. Cursino MS, Salviano MB, Abril VV, Zanetti Edos S, Duarte JM. The role of chromosome variation in the speciation of the red brocket deer complex: the study of reproductive isolation in females. BMC Evol Biol 2014 Mar 4;14(1):40.
        doi: 10.1186/1471-2148-14-40pubmed: 24593190google scholar: lookup
      3. Yang F, Fu B, O'Brien PC, Nie W, Ryder OA, Ferguson-Smith MA. Refined genome-wide comparative map of the domestic horse, donkey and human based on cross-species chromosome painting: insight into the occasional fertility of mules. Chromosome Res 2004;12(1):65-76.
      4. Rong RH, Cai HD, Yang XQ, Wei J. Fertile mule in China and her unusual foal. J R Soc Med 1985 Oct;78(10):821-5.
        doi: 10.1177/014107688507801006pubmed: 4045884google scholar: lookup
      5. Chandley AC. Fertile mules. J R Soc Med 1988 Jan;81(1):2.
        doi: 10.1177/014107688808100102pubmed: 3343668google scholar: lookup
      6. Cunniff C, Jones KL, Benirschke K. Ovarian dysgenesis in individuals with chromosomal abnormalities. Hum Genet 1991 Apr;86(6):552-6.
        doi: 10.1007/BF00201540pubmed: 2026420google scholar: lookup
      7. Deanesly R. Germ cell proliferations in the fetal horse ovary. Cell Tissue Res 1977 Dec 19;185(3):361-71.
        doi: 10.1007/BF00220296pubmed: 597852google scholar: lookup
      8. Wilmsen S, Kost C. A New Classification Framework to Understand Evolutionary Transitions in Individuality. Bioessays 2026 Jan;48(1):e70098.
        doi: 10.1002/bies.70098pubmed: 41572938google scholar: lookup
      9. Gambini A, Smith JM, Gurkin RJ, Palacios PD. Current and Emerging Advanced Techniques for Breeding Donkeys and Mules. Animals (Basel) 2025 Mar 29;15(7).
        doi: 10.3390/ani15070990pubmed: 40218383google scholar: lookup
      10. Lamb AM, Peplow LM, Chan WY, Crane ZJ, Everson GA, Harrison PL, Hite TE, Hoffmann AA, Humphrey CA, Koukoumaftsis LP, van Oppen MJH. Fertile Hybrids Could Aid Coral Adaptation. Ecol Evol 2024 Nov;14(11):e70570.
        doi: 10.1002/ece3.70570pubmed: 39568767google scholar: lookup