Phenotypic characterization of a pig with XX karyotype and ambiguous genitalia: Cytogenetic, endocrine, and histopathological evidence.
Abstract
XX male syndrome is a rare genetic disorder in humans, characterized by the presence of male or ambiguous genitalia in individuals with a female karyotype (2n = 44 + XX). This syndrome is most commonly attributed to the translocation of the SRY gene from the Y chromosome to the X chromosome; however, in some individuals, the SRY gene is not detected, suggesting alternative mechanisms such as chimerism or mosaicism. In pigs (Sus scrofa domestica), sexual differentiation also depends on the functional presence of the SRY gene. This study describes the case of a six-month-old pig with a 2n = 36 + XX karyotype and ambiguous genitalia, found on a farm in Piñas, Ecuador. Cytogenetic, endocrine, anatomical (macroscopic and histopathological), and necropsy studies were conducted to characterize the syndrome observed. Cytogenetic analyses revealed a normal female karyotype without evidence of numerical or structural chromosomal abnormalities, while hormonal evaluations showed atypical levels of testosterone and estradiol. Necropsy and histological examination identified abnormalities in the reproductive organs and urinary system. This case highlights the importance of recognizing and characterizing disorders of sexual development in pigs, both for clinical diagnosis and for a deeper understanding of the underlying genetic mechanisms.
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Sinclair AH, Berta P, Palmer MS, Hawkins JR, Griffiths BL, Smith MJ, Foster JW, Frischauf AM, Lovell-Badge R, Goodfellow PN. A gene from the human sex-determining region encodes a protein with homology to a conserved DNA-binding motif. Nature. [Internet]. 1990; 346:240–244. doi: https://doi.org/cgph3q DOI: https://doi.org/10.1038/346240a0
De la Chapelle A. Analytic review: nature and origin of males with XX sex chromosomes. Am. J. Hum. Genet. [Internet]. 1972; 24(1):71–105. PMID: 4622299. Disponible en: https://goo.su/UdJUUTE
Du H, Taylor HS. Development of the Genital System. En: Moody-SA, editor. Principles of Developmental Genetics. 2nd ed. Oxford: Academic Press; 2015; p. 487–504. Disponible en: https://doi.org/pnzr DOI: https://doi.org/10.1016/B978-0-12-405945-0.00027-2
Paneque A, Armendáriz S, Reyes-Silva C, Garzón-Castro M, Tambaco-Jijón N. Varones 46, XX: a propósito de dos casos genéticamente distintos. Rev. Urol. Colomb. [Internet]. 2019; 28:080–087. doi: https://doi.org/pnzs DOI: https://doi.org/10.1055/s-0038-1673338
Hunter RH, Greve T. Intersexuality in pigs: clinical, physiological and practical considerations. Acta Vet. Scand. [Internet]. 1996; 37:1–12. doi: https://doi.org/pnzt DOI: https://doi.org/10.1186/BF03548114
Duarte DAS, Schroyen M, Mota RR. Vanderick S, Gengler N. Recent genetic advances on boar taint reduction as an alternative to castration: a review. J. Appl. Genet. [Internet]. 2021; 62:137–150. doi: https://doi.org/grkjgz DOI: https://doi.org/10.1007/s13353-020-00598-w
Pailhoux E, Parma P, Sundström J, Vigier B, Servel N, Kuopio T, Locatelli A, Pelliniemi LJ, Cotinot C. Time course of female-to-male sex reversal in 38, XX fetal and postnatal pigs. Dev. Dynam. [Internet]. 2001; 222:328–340. doi: https://doi.org/cmpdwt DOI: https://doi.org/10.1002/dvdy.1194
Wu J, Yu H, Zhang Y, Zhao H, Zhong B, Yu C, Feng Z, Yu H, Li H. Pathological characteristics of SRY-negative 38, XX-DSD pigs: A family case report. Anim. Reprod. Sci. [Internet]. 2024; 270:107579. doi: https://doi.org/pnzv DOI: https://doi.org/10.1016/j.anireprosci.2024.107579
Ferrari MTM, Silva ES do N, Nishi MY, Batista RL, Mendonca BB, Domenice S. Testicular differentiation in 46, XX DSD: an overview of genetic causes. Front. Endocrinol. [Internet]. 2024; 15:1385901. doi: https://doi.org/pnzw DOI: https://doi.org/10.3389/fendo.2024.1385901
Guerrero AEE, Chalco L, Pérez JE, da Mota LSLS, Nirchio M. Meningoencefalocele asociado a mosaicismo cromosómico en un neonato Canis familiaris. Rev. Investig. Vet. Peru. [Internet]. 2021; 32(1):e17812. doi: https://doi.org/n6q7 DOI: https://doi.org/10.15381/rivep.v32i1.17812
Lawce HJ. Chromosome stains. En: Arsham MS, Barch MJ, Lawce HJ, editors. The AGT Cytogenetics Laboratory Manual. Hoboken (NJ): John Wiley & Sons, Inc. 2017; p. 213–300. doi: https://doi.org/pnzx DOI: https://doi.org/10.1002/9781119061199.ch6
Guruvishnu P, Punyakumari B, Ekambaram B, Rao KS. Cytogenetic studies in crossbred pigs. Indian J. Anim. Res. [Internet]. 2014; 48(1):1-5. doi: https://doi.org/pnzz DOI: https://doi.org/10.5958/j.0976-0555.48.1.001
Kirkwood J. Guidelines for the euthanasia of animals. En: American Veterinary Medical Association (AVMA). Anim. Welf. [Internet]. 2013; 22(3):412-412. doi: https://doi.org/pnz2 DOI: https://doi.org/10.1017/S0962728600005492
Pailhoux E, Mandon-Pepin B, Cotinot C. Mammalian gonadal differentiation: the pig model. Reprod. Suppl. [Internet]. 2001; 58:65–80. doi: https://doi.org/pnz5
Kurtz S, Lucas-Hahn A, Schlegelberger B, Göhring G, Niemann H, Mettenleiter TC, Petersen B. Knockout of the HMG domain of the porcine SRY gene causes sex reversal in gene-edited pigs. Proc. Natl. Acad. Sci. USA. [Internet]. 2021; 118(2):e2008743118. doi: https://doi.org/ghth73 DOI: https://doi.org/10.1073/pnas.2008743118
Rousseau S, Iannuccelli N, Mercat MJ, Naylies C, Thouly JC, Servin B, Milan D, Pailhoux E, Riquet J. A genome-wide association study points out the causal implication of SOX9 in the sex-reversal phenotype in XX pigs. PLoS One. [Internet]. 2013; 8(11):e79882. doi: https://doi.org/pnz6 DOI: https://doi.org/10.1371/journal.pone.0079882
Switoński M, Jackowiak H, Godynicki S, Klukowska J, Borsiak K, Urbaniak K. Familial occurrence of pig intersexes (38, XX; SRY-negative) on a commercial fattening farm. Anim. Reprod. Sci. [Internet]. 2002; 69(1- 2):117–124. doi: https://doi.org/ccwvs2 DOI: https://doi.org/10.1016/S0378-4320(01)00168-3
Pinton A, Pailhoux E, Piumi F, Rogel-Gaillard C, Darré R, Yerle M, Ducos A, Cotinot C. A case of intersexuality in pigs associated with a de novo paracentric inversion 9 (p1.2; p2.2). Anim. Genet. [Internet]. 2002; 33(1):69-71. https://doi.org/d3qztw DOI: https://doi.org/10.1046/j.1365-2052.2002.00813.x
Alkhzouz C, Bucerzan S, Miclaus M, Mirea AM, Miclea D. 46, XX DSD: Developmental, clinical and genetic aspects. Diagnostics. [Internet]. 2021; 11(8):1379. doi: https://doi.org/pnz7 DOI: https://doi.org/10.3390/diagnostics11081379
Vilchis F, Mares L, Chávez B, Paredes A, Ramos L. Late- onset vanishing testis-like syndrome in a 38,XX/38,XY agonadic pig (Sus scrofa). Reprod. Fertil. Dev. 2020; 32(3):284-291. doi: https://doi.org/pnz8 DOI: https://doi.org/10.1071/RD18514