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Topic:Sexual Development

Sexual development in horses encompasses the physiological and hormonal processes that occur as horses reach reproductive maturity. This development is influenced by factors such as age, genetics, and environmental conditions. In mares, sexual maturity is marked by the onset of estrous cycles, while in stallions, it involves the production of viable sperm. Hormones such as estrogen, progesterone, and testosterone play significant roles in regulating these processes. Understanding sexual development is important for breeding management, reproductive health, and performance. This page compiles peer-reviewed research studies and scholarly articles that explore the mechanisms, influences, and implications of sexual development in equine species.
One-stage surgical case management of a two-year-old Arabian horse affected by male-pseudo hermaphroditism.
Journal of equine veterinary science    January 17, 2024   Volume 133 105007 doi: 10.1016/j.jevs.2024.105007
Pompermayer E, Ysebaert MP, Vinardell T, Oikawa MA, Jonhson JP, Fernandes T, David F.A two-year-old Arabian horse presented for abnormal external genitalia and dangerous stallion-like behavior was diagnosed with disorder of sexual development (DSD), also known as intersex/hermaphroditism. Standing 1-stage surgical procedure performed under sedation, and local anesthesia to concurrently eliminate stallion-like behavior, risk of neoplastic transformation of intraabdominal gonads, and to replace ambiguous external genital with a functional, and cosmetically more acceptable anatomy. Step-1) Laparoscopic abdominal exploration and gonadectomy; Step-2) Rudimentary penis resection and...
Multispecies comparative analysis reveals transcriptional specificity during Mongolian horse testicular development.
Reproduction in domestic animals = Zuchthygiene    July 13, 2022   Volume 57, Issue 11 1295-1306 doi: 10.1111/rda.14203
Zhang FL, Zhang XY, Zhao JX, Zhu KX, Liu SQ, Zhang T, Sun YJ, Wang JJ, Shen W.Mongolian horses have been bred and used for labor and transport for centuries. Nevertheless, traits of testicular development in Mongolian horses have rarely been studied; particularly, studies regarding the transcriptional regulation characteristics of testicular development are lacking. In this paper, transcription specificity during testicular development in Mongolian horses is highlighted via a multispecies comparative analysis and weighted gene co-expression network analysis (WGCNA). Interestingly, the results showed that most genes were up-regulated in the testes after sexual maturity, ...
Neonatal glucocorticoid overexposure alters cardiovascular function in young adult horses in a sex-linked manner.
Journal of developmental origins of health and disease    June 3, 2020   Volume 12, Issue 2 309-318 doi: 10.1017/S2040174420000446
Valenzuela OA, Jellyman JK, Allen VL, Niu Y, Holdstock NB, Forhead AJ, Giussani DA, Fowden AL, Herrera EA.Prenatal glucocorticoid overexposure has been shown to programme adult cardiovascular function in a range of species, but much less is known about the long-term effects of neonatal glucocorticoid overexposure. In horses, prenatal maturation of the hypothalamus-pituitary-adrenal axis and the normal prepartum surge in fetal cortisol occur late in gestation compared to other precocious species. Cortisol levels continue to rise in the hours after birth of full-term foals and increase further in the subsequent days in premature, dysmature and maladapted foals. Thus, this study examined the adult ca...
Protocols using detomidine and oxytocin induce ex copula ejaculation in stallions.
Theriogenology    August 21, 2019   Volume 140 93-98 doi: 10.1016/j.theriogenology.2019.08.024
Tricyclic antidepressives, such as imipramine, indirectly induce ejaculation by increasing the noradrenaline concentration, which triggers an α-adrenergic response, whereas α-adrenergic agonists, such as xylazine and detomidine, directly trigger ejaculation by activating the α-1 adrenergic receptors. Furthermore, serum oxytocin concentrations in stallions increase drastically before ejaculation, but decline immediately thereafter, implicating the role of this hormone in emission. The objectives of the present study were to: 1) compare the efficiency of various protocols for inducing ex copu...
Biological Functions and Clinical Applications of Anti-Müllerian Hormone in Stallions and Mares.
The Veterinary clinics of North America. Equine practice    October 8, 2016   Volume 32, Issue 3 451-464 doi: 10.1016/j.cveq.2016.07.004
Claes AN, Ball BA.Anti-Müllerian hormone (AMH) plays a major role in sexual differentiation, Leydig cell differentiation, and folliculogenesis. In addition, AMH has clinical value in equine practice. In stallions, AMH can serve as an endocrine marker for equine cryptorchidism and as an immunohistochemical marker for Sertoli cell tumors. Considering that AMH is also an ovarian specific product, intact mares can be differentiated from ovariectomized mares. Peripheral AMH concentrations reflect the follicular population in mares, and therefore, are useful in the assessment of ovarian reserve and reproductive life...
Acrosin-binding protein (ACRBP) in the testes of stallions.
Animal reproduction science    November 10, 2015   Volume 163 179-186 doi: 10.1016/j.anireprosci.2015.11.010
Kim JT, Jung HJ, Song H, Yoon MJ.Acrosin Binding Protein (ACRBP) is specifically localized in the acrosome of germ cells of several species, including mice, pigs, guinea pigs, and humans. The main objective of this study was to investigate ACRBP patterns in the germ cells of stallions at different reproductive stages and seminiferous tubule stages using Western blot, immunohistochemistry, and immunocytochemistry techniques. The stallion reproductive stages were classified as follows: pre-pubertal and post-pubertal stages based on the presence/absence of lumen opening in the seminiferous tubules and full spermatogenesis. The p...
The use of a novel combination of diagnostic molecular and cytogenetic approaches in horses with sexual karyotype abnormalities: a rare case with an abnormal cellular chimerism.
Theriogenology    January 31, 2014   Volume 81, Issue 8 1116-1122 doi: 10.1016/j.theriogenology.2014.01.040
Demyda-Peyrás S, Anaya G, Bugno-Poniewierska M, Pawlina K, Membrillo A, Valera M, Moreno-Millán M.Sex chromosome aberrations are known to cause congenital abnormalities and unexplained infertility in horses. Most of these anomalies remain undiagnosed because of the complexity of the horse karyotype and the lack of specialized laboratories that can perform such diagnoses. On the other hand, the utilization of microsatellite markers is a technique widely spread in horse breeding, mostly because of their usage in parentage tests. We studied the usage of a novel combination of diagnostic approaches in the evaluation of a very uncommon case of chromosomal abnormalities in a Spanish purebred col...
Serum anti-Müllerian hormone concentrations in stallions: developmental changes, seasonal variation, and differences between intact stallions, cryptorchid stallions, and geldings.
Theriogenology    April 13, 2013   Volume 79, Issue 9 1229-1235 doi: 10.1016/j.theriogenology.2013.03.019
Claes A, Ball BA, Almeida J, Corbin CJ, Conley AJ.Anti-Müllerian hormone (AMH), a homodimeric glycoprotein, is secreted early in fetal life when it exerts a crucial function in sexual differentiation. The secretion of AMH in male humans persists after birth and is characterized by high prepubertal concentrations followed by a significant decrease at the onset of puberty. The expression of AMH in the normal and cryptorchid equine testis is well characterized but data regarding circulating AMH concentrations are lacking. The objectives of this study were to determine serum AMH concentrations in neonatal colts and fillies, prepubertal colts, an...
Expression of 11β-hydroxysteroid dehydrogenase type 1 and glucocorticoid receptors in reproductive tissue of male horses at different stages of sexual maturity.
Reproduction in domestic animals = Zuchthygiene    June 27, 2012   Volume 48, Issue 2 231-239 doi: 10.1111/j.1439-0531.2012.02137.x
Herrera-Luna CV, Budik S, Helmreich M, Walter I, Aurich C.Glucocorticoids (GCs) as mediators of the stress response may affect Leydig cell function by inhibiting either luteinizing hormone receptor expression or testosterone biosynthesis. The isozymes 11β-hydroxysteroid dehydrogenase (11βHSD) 1 and 11βHSD2 control the intracellular cortisol levels. Little is known about the effects of stress on fertility in the equine. The objective of the present study was to determine the presence and cellular localization of glucocorticoid receptors (GCR) and glucocorticoid-metabolizing enzymes (11βHSD1 and 11βHSD2) in equine epididymal and testicular tissue ...
Immunocytochemical localization of cytochrome P450 aromatase in the testis of prepubertal, pubertal, and postpubertal horses.
Theriogenology    December 10, 2003   Volume 61, Issue 2-3 293-299 doi: 10.1016/s0093-691x(03)00237-1
Hess MF, Roser JF.The large amount of testicular estrogens produced by the stallion is unique compared to the amounts found in other domestic species. Although the cellular locale of the cytochrome P450 aromatase (P450arom) enzyme that converts C19 androgens to C18 estrogens has been identified in the Leydig cell of adult equine testis, the location in the immature equine testis is not known. The goal of this work was to localize the enzyme in colts and stallions during sexual development. Testes were obtained from prepubertal (n=7), pubertal (n=6), and postpubertal (n=8) colts and stallions during both the bre...
Analysis of the physiological processes connected with sexual maturation of stallions.
Polskie archiwum weterynaryjne    January 1, 1987   Volume 27, Issue 1 5-21 
Kosiniak K, Bittmar A.Physiological processes connected with sexual maturation of stallions were observed on 10 half-breed Anglo-Arab stallions beginning from 8 months of age, until 4.5 years of age. It was found that there is full somatic and sexual development in the stallion reached around the age of 3.5 years, and the sperm morphology stabilized in the range of the physiological norm around 3.0 years of age. On the other hand biochemical components of the semen plasma such as glycerylphosphorylcholine (GPC), ergothioneine (EGT), total protein (PRT), up to age 4.5 years, reach significantly lower value than in m...
A quantitative study of Sertoli cell and germ cell populations as related to sexual development and aging in the stallion.
Biology of reproduction    August 1, 1986   Volume 35, Issue 1 138-148 doi: 10.1095/biolreprod35.1.138
Jones LS, Berndtson WE.Testes from 47 stallions, 1-20 yr of age, were used to examine the influence of age on Sertoli and germ cell populations as well as on functional activity of Sertoli cells. For these stallions, the number of Sertoli cells per paired testes declined linearly with age, and was only 41.7% as great at age 20 as at age 2. However, development of reproductive organs proceeded until age 12-13, as evident from increases in paired testes weight and quantitative rates of spermatozoal production. Although the absolute number of Sertoli cells declined during this period of development, individual Sertoli ...
Coprophagy by foals: effect of age and possible functions.
Equine veterinary journal    January 1, 1985   Volume 17, Issue 1 17-19 doi: 10.1111/j.2042-3306.1985.tb02030.x
Crowell-Davis SL, Houpt KA.In colts and fillies observed from birth to 24 weeks old, coprophagy occurred from Weeks 1 to 19. Its frequency was greatest during the first two months. Coprophagy was rarely observed in mares and stallions. Foals usually ate the faeces of their mother but were observed to eat their own and those of a stallion and another unrelated mare. Urination by the foal occurred before, during or after 26 per cent of the coprophagy incidents. It is hypothesised that foals may consume faeces in response to a maternal pheromone which signals the presence of deoxycholic acid or other acids which the foal m...
The establishment and sexual differentiation of the horse gonad.
Boletin de estudios medicos y biologicos    January 1, 1980   Volume 31, Issue 1-2 3-23 
Merchant-Larios .No abstract available
Luteinizing hormone during sexual maturation in pony mares.
American journal of veterinary research    April 1, 1979   Volume 40, Issue 4 584-586 
Sharp DC, Garcia MC, Ginther OJ.Luteinizing hormone (LH) was quantified in pony mares during artificially induced sexual maturation. Ovarian follicular development was also assessed by rectal palpation of the ovaries. With the exception of large periovulatory LH concentrations in two mares that ovulated, LH concentrations were not significantly different in mares undergoing sexual maturation and thus having marked follicular development when compared with mares that were not undergoing sexual maturation and thus did not have marked follicular development. These results indicate a dissociation in time between the onset of fol...
[Chromolipoids of the interstitial gland of the testis of the horse before and after sexual maturity].
Bollettino della Societa italiana di biologia sperimentale    March 1, 1954   Volume 30, Issue 3 236-238 
GOGLIA G.No abstract available