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Topic:Developmental Biology

Developmental biology in horses involves the study of the processes by which horses grow and develop from a single fertilized egg into a fully formed organism. This field encompasses various stages, including embryonic development, fetal growth, and postnatal maturation. Researchers in this area examine cellular differentiation, gene expression, and morphogenetic movements that contribute to the formation of tissues and organs in equine species. Key topics include the molecular mechanisms that regulate developmental pathways, the influence of genetic and environmental factors on development, and the identification of developmental disorders. This page compiles peer-reviewed research studies and scholarly articles that explore the fundamental aspects of equine developmental biology, offering insights into the mechanisms driving normal and abnormal development in horses.
Embryo transport through the mare’s oviduct depends upon cleavage and is independent of the ipsilateral corpus luteum.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 387-394 
Betteridge KJ, Eaglesome MD, Flood PF.Two experiments were conducted using 14 mares. In Exp. 1, mares were inseminated with semen treated with TEPA, which, in other species, has been shown to lead to an arrest in ovum cleavage at 2--4 cells. The oviducts and/or uterus were then flushed 7--10 days after ovulation in 6 mares (Group A) or 2--6 days after ovulation in 5 mares (Group B). Fresh eggs were found in the oviduct flushes of 5 Group A and 5 Group B mares: 9 of the 10 eggs appeared to have cleaved, but none had developed beyond 16-cells. Seven eggs contained spermatozoa and 3 of 4 eggs from each group showed evidence of fertil...
Ultrastructural studies of the equine uterus and placenta following parturition.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 579-586 
Steven DH, Jeffcott LB, Mallon KA, Ricketts SW, Rossdale PD, Samuel CA.Post-partum placentae and uterine biopsy samples from mares after normal and abnormal foalings are described. After normal delivery there is little damage to fetal or maternal tissues. The villous epitheliochorial palcenta separates cleanly at the maternal-fetal interface and the afterbirth consists almost exclusively of fetal tissue. Uterine involution is well advanced by the 3rd and 4th days post partum and the changes are usually complete by the oestrus 7--10 days after parturition. Placental separation and involution of the uterus appear to proceed normally in malpresented foals and in oth...
Behavior of ovarian and testicular interstitial cells during ontogenesis in the horse. Morphological and histochemical studies “in vivo” and “in vitro”.
Basic and applied histochemistry    January 1, 1979   Volume 23, Issue 2 85-91 
Aureli G, Lauria A.The results of a study on interstitial cells of the horse gonads from foetal life to puberty are reported. The morphological (also ultrastructural) histochemical, histophysical and histoenzymological findings both in the organ and in monolayer cultures, clarify the problem of the ontogenesis of these cells showing that: --foetal interstitial cells give origin to "xanthochrome" cells; --"xanthochrome" cells in the prepuberal gonad are continuously renewed; --the same type of cells which in th prepuberal period undergo lipochromic degeneration, differentiate at puberty into Leydig cells in the t...
Ultrastructural events in horse gonadal morphogenesis.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 479-485 
Merchant-Larios H.The establishment and sexual differentiation of the gonads of horse embryos were studied using high-resolution techniques. The most dramatic observation is the early cytodifferentiation of the somatic cells into steroidogenic cells which takes place before sexual differentiation of the gonads. A unique morphogenetic pattern is established during this process: the seminiferous cords of the testis are completely segregated from the steroidogenic tissue by a basal lamina, while in the medulla of the ovary, steroidogenic cells differentiate inside the epithelial cords which contain germ cells. Thi...
The role of the fetal gonads and placenta in steroid production, maintenance of pregnancy and parturition in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 499-509 
Pashen RL, Allen WR.The effects of fetal gonadectomy on steroid production and the maintenance of pregnancy in the mare were studied. Removal of the fetal gonads resulted in an immediate fall in maternal plasma concentrations of conjugated and unconjugated oestrogens whereas progestagen levels remained unchanged. Hormone profiles in mares carrying sham-operated fetuses remained similar to those in unoperated control mares. Plasma levels of 13,14-dihydro-15-oxo-PGF-2 alpha (PGFM) were much lower, and uterine contractions weaker, during labour in mares carrying gonadectomized foals than in control mares. Pregnancy ...
Growth and maturity in the equine fetus.
Journal of the Royal Society of Medicine    September 1, 1978   Volume 71, Issue 9 658-661 doi: 10.1177/014107687807100906
Platt H.No abstract available
Energy under-nutrition in the weanling filly foal. II. Effects on body conformation and epiphyseal plate closure in the fore-limb.
The British veterinary journal    July 1, 1978   Volume 134, Issue 4 321-332 
Ellis RN, Lawrence TL.No abstract available
Development of the venous drainage of the equine hypophysis cerebri.
Anatomia, histologia, embryologia    June 1, 1978   Volume 7, Issue 2 120-128 doi: 10.1111/j.1439-0264.1978.tb00662.x
Vitums A.No abstract available
[Implantation, fetal development and PMSG production in twin mares after mating with their chimeric twin brother].
Verhandelingen - Koninklijke Academie voor Geneeskunde van Belgie    January 1, 1978   Volume 40, Issue 4 253-268 
Bouters R, Spincemaille J, Vandeplassche M, Bonte P, Coryn M.No abstract available
Germ cell proliferations in the fetal horse ovary.
Cell and tissue research    December 19, 1977   Volume 185, Issue 3 361-371 doi: 10.1007/BF00220296
Deanesly R.During the 340 day pregnancy of the horse, the germ cells in the fetal ovary showed a meiotic prophase which began in days 60-70 and might be prolonged after day 200. Three or four successive oogonial mitotic proliferations passed into the meiotic prophase but the great majority of the oocytes first involved degenerated, and no appreciable numbers of primordial follicles were left behind. At 150 days of pregnancy and again at 197 days, oocytes in early meiotic stages filled the ovarian cortex. Primordial follicles were present, but rare. As the prophase gradually came to an end, groups of oocy...
Studies on the equine placenta. III. Ultrastructure of the uterine glands and the overlying trophoblast.
Journal of reproduction and fertility    November 1, 1977   Volume 51, Issue 2 433-437 doi: 10.1530/jrf.0.0510433
Samuel CA, Allen WR, Steven DH.Ultrastructural studies of the uterine glands at intervals during pregnancy in the mare show that secretory activity continues after formation of the placental exchange units. The nature of the glandular secretion appeared initially to be proteinaceous, but cellular debris was also present during the last third of gestation. These secretions were absorbed by the trophoblast overlying the mouths of the glands. The fate secretions and their significance for the fetus and placenta are unknown.
Coprophagia as seen in thoroughbred foals.
Equine veterinary journal    July 1, 1977   Volume 9, Issue 3 155-157 doi: 10.1111/j.2042-3306.1977.tb04010.x
Francis-Smith K, Wood-Gush DG.Four Thoroughbred foals were seen to quickly eat part of the faeces deposited by their own dams on some 40 per cent of the mare-defaecating occasions observed between the second and fifth week after birth. They did not do it before or after this period. This behaviour was thought to be a feeding pattern which formed a normal part of the foal's development.
Development of the equine hypophysis cerebri, with a reference to its blood supply.
Anatomia, histologia, embryologia    June 1, 1977   Volume 6, Issue 2 119-134 doi: 10.1111/j.1439-0264.1977.tb00427.x
Vitums A.No abstract available
Studies on the equine placenta II. Ultrastructure of the placental barrier.
Journal of reproduction and fertility    November 1, 1976   Volume 48, Issue 2 257-264 doi: 10.1530/jrf.0.0480257
Samuel CA, Allen WR, Steven DH.In early pregnancy the equine placenta consists of a simple apposition of fetal and maternal epithelia, but it becomes more complex with the formation of microcotyledons between 75 and 100 days of gestation. Although the placental barrier maintains an epitheliochorial arrangement throughout the course of pregnancy, a thinning of the maternal epithelium and a progressive indentation of the chorionic epithelium by fetal capillaries shortens the length of the diffusion pathway and reduces the amount of placental tissue between fetal and maternal bloodstreams. These structural modifications may re...
Congenital deformities in two Clydesdale foals.
Equine veterinary journal    October 1, 1976   Volume 8, Issue 4 161-164 doi: 10.1111/j.2042-3306.1976.tb03330.x
Boyd JS.The deformities observed in 2 Clydesdale foals are described. Both had abnormal joint positions in the forelimbs and discrepancies in the symmetry of the vertebral column. The changes were only mild in one case but extreme in the other where it was accompanied by torticollis, scoliosis and vertebral fusion. A comparison is made with deformities described in the contracted foal syndrome and some of the developmental implications discussed.
Development of equine veterinary medicine in the United States.
Journal of the American Veterinary Medical Association    July 1, 1976   Volume 169, Issue 1 50-55 
Kester WO.No abstract available
Influences on fetal growth.
Journal of reproduction and fertility    May 1, 1976   Volume 47, Issue 1 167-181 doi: 10.1530/jrf.0.0470167
McKeown T, Marshall T, Record RG.No abstract available
Correspondence: Growth plate defects in foals.
The Veterinary record    March 13, 1976   Volume 98, Issue 11 225 doi: 10.1136/vr.98.11.225-a
Ellis DR.No abstract available
Dehydroepiandrosterone in the fetal gonads of the horse.
Journal of reproduction and fertility    March 1, 1976   Volume 46, Issue 2 423-425 doi: 10.1530/jrf.0.0460423
Raeside JI.No abstract available
Fetal and placental O2 consumption and the uptake of different metabolites in the ruminant and horse during late gestation.
Advances in experimental medicine and biology    January 1, 1976   Volume 75 731-736 doi: 10.1007/978-1-4684-3273-2_85
Silver M, Comline RS.No abstract available
Early embryonic development in the horse.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 495-498 
van Niekerk CH, Allen WR.No abstract available
The development of the lung and its surfactant in the foal and in other species.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 651-657 
Pattle RE, Rossdale PD, Schock C, Creasey JM.The development of the lung from the glandular through the canalicular to the alveolar stages in the horse fetus is described. Traces of surfactant and occasional lamellated osmiophilic bodies representing intracellular surfactant were found at 150 days of gestation, some 40 to 60 days before the transition to the canalicular stage. During this transition some of the cuboidal cells of the glandular rosettes are transformed into cells of Types I and II, but the surfactant is not fully developed until 300 days or, in some foals, until after delivery.
Germ cell development and the meiotic prophase in the fetal horse ovary.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 547-552 
Deanesly R.A histological study of the developing germinal epithelium in the fetal horse ovary shows an enormous wastage of oocytes during the meiotic phase, between Days 73 and 150 of pregnancy. The first groups of oocytes to enter this phage undergo mass degeneration and eventually disappear; few, if any, oocytes develop to primordial follicles. Peripheral oogonia, dividing by mitosis, give rise to more oocytes which pass through the same changes and are also reduced by degeneration, but by Day 150 primordial follicles are fairly common.
Development of the equine fetus and placenta.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 503-505 
Douglas RH, Ginther OJ.Prenatal specimens from mares with known breeding dates were used to characterize morphological changes in the fetus and placenta of pony mares. Prenatal characteristics and the day on which each was first found and weights of different components of the equine conceptus are summarized.
Fine structure of the gonads of the horse and its functional implications.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 563-567 
González-Angulo A, Hernández-Jáuregui P, Martínez-Zedilo G.Light and electron microscopic studies of the gonads of the fetal horse have shown that, in their hypertrophic condition which begins during the 3rd month, the interstitial cells contain large amounts of smooth endoplasmic reticulum, suggesting a secretory activity. Hydroxylating activity which was cytochrome P-450-dependent was observed in the fetal testis and may be involved in steroid biosynthesis.
Ultrastructural development of the equine placenta.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 575-578 
Samuel CA, Allen WR, Steven DH.Microcotyledons, which are a distinctive feature of the mature equine placenta, are fully formed by Day 150 of gestation. The fetal component of each microcotyledon is developed from several primary folds of trophoblast which become elaborately subdivided as gestation proceeds. These changes are reflected in the structure of the maternal crypts, which receive the fetal villi. Between Days 60 and 150 of gestation the maternal epithelium is greatly reduced in height. No such change occurs on the fetal side of the placenta, but between Days 100 and 250 a progressive indentation of the epithelium ...
Embryological studies on the dartmoor pony during the first third of gestation.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 499-502 
Marrable AW, Flood PF.A sequence of ten known-age embryos recovered from Dartmoor Ponies during the first 4 months of gestation is described. Changes in size, shape and vascularity of the conceptus are recorded, as well as the growth and decline of the yolk-sac and the succeeding establishment of the allantochorion. The progress of equine somatogenesis is compared with that of the pig which it lags on average of about 4 days. Some quantitative data are presented.
Development of pituitary and adrenal glands in the fetal horse.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 553-556 
Samuel CA, Allen WR, Steven DH.The various cell types in the adult anterior pituitary may be distinguished at the ultrastructural level of the sizes of the secretory granules within the cytoplasm. In the fetal adenohypophysis, with the exception of prolactin-producing cells, all types may be identified after Day 100 of gestation. Morphological evidence suggests that they are producing and secreting trophic hormones. The three constituent layers of the adrenal cortex are also discernible by Day 100 of pregnancy. The cells of the zona glomerulosa have large numbers of darkly stained inclusions within the cytoplasm. The zona f...
Anatomy of the placental barrier in the mare.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 579-582 
Steven DH, Samuel CA.The study of the equine placenta, which began in Venice in 1598, has a long but discontinuous history. Early observations were purely morphological, but new techniques have stimulated a broader and more functional approach. Histological and ultrastructural observations at various stages of pregnancy have shown that the fetal side of the placenta comes to acquire certain features in common with the air-blood barrier of the mammalian lung. These changes may reflect the increasing O2 requirements of the fetus as gestation proceeds.
Origin and histogenesis of equine endometrial cups.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 391-395 
Moor RM, Allen WR, Hamilton DW.Biochemical and morphological studies were carried out to determine the origin and histogenesis of endometrial cups in mares. A wide range of fetal and maternal tissues were cultured in vitro and their ability to secrete gonadotrophin (PMSG) was monitored. High levels of PMSG were produced in culture only by cells from the restricted area of the equine trophoblast known as the chorionic girdle which is an annular band of highly specialized cells at the junction of the allantois and the regressing yolk sac. The morphological appearance of girdle cells after cultivation in vitro and after alloge...