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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.
Increasing expression of oxytocin and vasopressin receptors in the equine conceptus between Days 10 and 16 of pregnancy.
Reproduction, fertility, and development    June 16, 2012   Volume 24, Issue 5 641-648 doi: 10.1071/RD11167
Budik S, Palm F, Walter I, Helmreich M, Aurich C.Oxytocin (OT) and arginine vasopressin (AVP) have been detected in the yolk sac of the pre-attachment equine conceptus. Therefore, we have assessed the presence of OT and AVP receptors in equine conceptuses between Days 10 and 16 of pregnancy by qualitative PCR, quantitative PCR and immunohistochemistry. Expression of OT receptor and of the AVP receptors V1aR and V2R could be verified after sequencing the RT-PCR products of the expected length. The size of conceptuses used for quantitative PCR significantly increased with day of pregnancy (P<0.01) as did their quantitative expression of OTR...
Random X inactivation in the mule and horse placenta.
Genome research    May 29, 2012   Volume 22, Issue 10 1855-1863 doi: 10.1101/gr.138487.112
Wang X, Miller DC, Clark AG, Antczak DF.In eutherian mammals, dosage compensation of X-linked genes is achieved by X chromosome inactivation. X inactivation is random in embryonic and adult tissues, but imprinted X inactivation (paternal X silencing) has been identified in the extra-embryonic membranes of the mouse, rat, and cow. Few other species have been studied for this trait, and the data from studies of the human placenta have been discordant or inconclusive. Here, we quantify X inactivation using RNA sequencing of placental tissue from reciprocal hybrids of horse and donkey (mule and hinny). In placental tissue from the equid...
Factors influencing placental development and function in the mare.
Equine veterinary journal. Supplement    May 19, 2012   Issue 41 113-119 doi: 10.1111/j.2042-3306.2011.00452.x
Wilsher S, Allen WR.The development of the equine placenta involves a series of stage-specific events which ensure that the fetus is nourished throughout its 11 months of gestation. Initially, placental exchange to the developing embryo is histotrophic, via the yolk sac but, as the allantochorion develops and microcotyledons form, haemotrophic nutrition plays the major role in sustaining the increasing demands of the growing fetus. This review describes the development of the allantochorionic placenta of the mare and discusses some of the factors that influence its growth, size and functions and, hence, its contr...
Uterine haemodynamics in young and aged pregnant mares measured using Doppler ultrasonography.
Equine veterinary journal. Supplement    May 19, 2012   Issue 41 15-21 doi: 10.1111/j.2042-3306.2011.00446.x
Ousey JC, Kölling M, Newton R, Wright M, Allen WR.Aged mares with endometrosis suffer higher rates of pregnancy loss than young mares, due to poor placental development. Reduced uterine blood supply may be one contributory factor. Objective: To measure uterine artery (UA) blood flow and other Doppler indices throughout pregnancy and compare placental and foal development in young mares and aged mares. Methods: Thoroughbred mares were grouped according to age and endometrial biopsy score: 1) 6 young mares (mean age 7.3 years, Category ); 2) 6 aged mares (mean age 18.3 years, Category II). Vascular pathology was nil or mild except in one aged m...
The development of clinical tools based on biomechanical research.
Veterinary journal (London, England : 1997)    May 5, 2012   Volume 192, Issue 2 129-130 doi: 10.1016/j.tvjl.2012.02.011
Roepstorff L.No abstract available
Induction of pluripotency in adult equine fibroblasts without c-MYC.
Stem cells international    March 19, 2012   Volume 2012 429160 doi: 10.1155/2012/429160
Khodadadi K, Sumer H, Pashaiasl M, Lim S, Williamson M, Verma PJ.Despite tremendous efforts on isolation of pluripotent equine embryonic stem (ES) cells, to date there are few reports about successful isolation of ESCs and no report of in vivo differentiation of this important companion species. We report the induction of pluripotency in adult equine fibroblasts via retroviral transduction with three transcription factors using OCT4, SOX2, and KLF4 in the absence of c-MYC. The cell lines were maintained beyond 27 passages (more than 11 months) and characterized. The equine iPS (EiPS) cells stained positive for alkaline phosphatase by histochemical staining ...
Change of Ferritin-binding Activity in the Serum of Foal after Birth.
Journal of equine science    February 28, 2012   Volume 22, Issue 4 73-76 doi: 10.1294/jes.22.73
Ohya T, Kondo T, Yoshikawa Y, Watanabe K, Orino K.In mammal circulation, various ferritin-binding proteins (FBPs) are thought to be involved in the clearance of circulating ferritin after complex formation with it. However, horse FBPs are known to cause inhibitory effects on ferritin immunoassay due to the concealment of the ferritin molecule to anti-ferritin antibodies used in the ferritin immunoassay. These inhibitory effects are eliminated by heat treatment of horse serum at 75°C for 15 min. The inhibitory effects on ferritin immunoassay in the sera of ten foal sera (5 females and 5 males) from 1 to 18 months were detected during all peri...
Immunohistochemical localisation of progesterone and oestrogen receptors at the placental interface in mares during early pregnancy.
Animal reproduction science    November 22, 2011   Volume 129, Issue 3-4 200-208 doi: 10.1016/j.anireprosci.2011.11.004
Wilsher S, Gower S, Allen WR.Previous reports documenting progesterone receptors (PR) and oestrogen receptors (ER) in the endometrium of early pregnant mares included specimens only up to Day 20 post ovulation. This study aimed to localise PR and ERα on equine feto-maternal tissues between Days 20 and 68 to encompass the period around fixation of the conceptus, development of the endometrial cups and attachment and initial interdigitation of the allantochorion. During early pregnancy mares had the same pattern of PR in the endometrium as that reported for other mammals; namely, a loss of PR from the endometrial epithelia...
Influence of the uterine environment on the development of in vitro-produced equine embryos.
Reproduction (Cambridge, England)    November 16, 2011   Volume 143, Issue 2 173-181 doi: 10.1530/REP-11-0217
Smits K, Govaere J, Peelman LJ, Goossens K, de Graaf DC, Vercauteren D, Vandaele L, Hoogewijs M, Wydooghe E, Stout T, Van Soom A.The necessity for early interaction between the embryo and the oviductal and/or uterine environment in the horse is reflected by several striking differences between equine embryos that develop in vivo and those produced in vitro. Better understanding of the salient interactions may help to improve the efficiency of in vitro equine embryo production. In an initial experiment, cleavage-stage in vitro-produced (IVP) equine embryos were transferred into the uterus of recipient mares that had ovulated recently to determine whether premature placement in this in vivo environment would improve subse...
Equine pre-implantation conceptuses express neuraminidase 2–a potential mechanism for desialylation of the equine capsule.
Reproduction in domestic animals = Zuchthygiene    October 24, 2011   Volume 47, Issue 3 449-454 doi: 10.1111/j.1439-0531.2011.01901.x
Klein C, Troedsson M.During the second and third week of pregnancy, the equine conceptus is covered by an acellular glycoprotein capsule. This capsule contains glycoproteins resembling those of the mucin family with sialic acid making up a high proportion of the carbohydrate. Coinciding with conceptus fixation, a marked decline in sialic acid content of the capsule occurs, which has been proposed to contribute to cessation of conceptus mobility. Herein, we describe the expression of neuraminidase 2 (NEU2) by pre-implantation stages of equine conceptus development. NEU2 transcript abundance was examined in conceptu...
The effects of an advanced uterine environment on embryonic survival in the mare.
Equine veterinary journal    September 25, 2011   Volume 44, Issue 4 432-439 doi: 10.1111/j.2042-3306.2011.00473.x
Wilsher S, Lefranc AC, Allen WR.During embryo transfer (ET) the equine embryo can tolerate a wide degree of negative asynchrony but positive asynchrony of >2 days usually results in embryonic death. There is still confusion over whether this is due to the inability of the embryo to induce luteostasis or to an inappropriate uterine environment. Objective: To assess embryo survival and development in an advanced uterine environment. Objective: Embryo-uterine asynchrony, not the embryo's inability to induce luteostasis, is responsible for embryonic death in recipient mares with a >2 days chronologically advanced uterus. Methods...
G6PDH-activity in equine oocytes correlates with morphology, expression of candidate genes for viability, and preimplantative in vitro development.
Theriogenology    August 5, 2011   Volume 76, Issue 7 1215-1226 doi: 10.1016/j.theriogenology.2011.05.025
Mohammadi-Sangcheshmeh A, Held E, Ghanem N, Rings F, Salilew-Wondim D, Tesfaye D, Sieme H, Schellander K, Hoelker M.Efficiencies for in vitro production of equine embryos are still low due to highly variable developmental competences of equine immature oocytes. In contrast to the equine, in vitro developmental competence of immature oocytes has been predicted successfully by the activity of glucose-6-phosphate dehydrogenase (G6PDH) indicated by brilliant cresyl blue (BCB) dye in a range of different species. Therefore, the aim of the present study was to test the association between G6PDH activity in equine oocytes with: (1) cumulus morphology and oocyte properties in terms of diameter and volume; (2) matur...
The SnSAG merozoite surface antigens of Sarcocystis neurona are expressed differentially during the bradyzoite and sporozoite life cycle stages.
Veterinary parasitology    June 30, 2011   Volume 183, Issue 1-2 37-42 doi: 10.1016/j.vetpar.2011.06.024
Gautam A, Dubey JP, Saville WJ, Howe DK.Sarcocystis neurona is a two-host coccidian parasite whose complex life cycle progresses through multiple developmental stages differing at morphological and molecular levels. The S. neurona merozoite surface is covered by multiple, related glycosylphosphatidylinositol-linked proteins, which are orthologous to the surface antigen (SAG)/SAG1-related sequence (SRS) gene family of Toxoplasma gondii. Expression of the SAG/SRS proteins in T. gondii and another related parasite Neospora caninum is life-cycle stage specific and seems necessary for parasite transmission and persistence of infection. I...
Characteristics of the equine embryo and fetus from days 15 to 107 of pregnancy.
Theriogenology    June 30, 2011   Volume 76, Issue 5 819-832 doi: 10.1016/j.theriogenology.2011.04.014
Franciolli AL, Cordeiro BM, da Fonseca ET, Rodrigues MN, Sarmento CA, Ambrosio CE, de Carvalho AF, Miglino MA, Silva LA.In spite of numerous, substantial advances in equine reproduction, many stages of embryonic and fetal morphological development are poorly understood, with no apparent single source of comprehensive information. Hence, the objective of the present study was to provide a complete macroscopic and microscopic description of the equine embryo/fetus at various gestational ages. Thirty-four embryos/fetuses were aged based on their crown rump length (CRL), and submitted to macroscopic description, biometry, light and scanning microscopy, as well as the alizarin technique. All observed developmental c...
Embryonic stem cells and iPS cells: sources and characteristics.
The Veterinary clinics of North America. Equine practice    June 16, 2011   Volume 27, Issue 2 233-242 doi: 10.1016/j.cveq.2011.04.003
Hackett CH, Fortier LA.The field of regenerative medicine research is rapidly expanding. One area of interest to equine researchers is the possibility of isolating or generating pluripotent cells, capable of producing differentiated cell types derived from all 3 primary germ layers. Reports of equine embryonic stem-like (ES) cell isolation can be found in the literature. Other groups are working to produce equine-induced pluripotent stem (iPS) cells. This article summarizes the essential features needed to characterize a cell type as pluripotent, specific challenges in using the horse as a model organism for pluripo...
Risk factors for the presence and extent of Developmental Orthopaedic Disease in the limbs of young horses: Insights from a count model.
Preventive veterinary medicine    June 12, 2011   Volume 101, Issue 1-2 96-106 doi: 10.1016/j.prevetmed.2011.05.009
Lepeule J, Seegers H, Rondeau V, Robert C, Denoix JM, Bareille N.Developmental Orthopaedic Disease (DOD) in limb joints is frequent, can cause lameness and is a major cause of economic losses for the horse breeding industry. Studies on risk factors for DOD usually dichotomise the outcome to presence/absence without considering the extent of the disease, which can be appreciated by the number or the severity of the lesions. The aim of this study was to assess the effects of growth, exercise conditions and feeding practices on the number of radiographic findings (RF) of DOD in a cohort of horses, assuming that the risk factors associated with the presence of ...
Induced pluripotent stem cell lines derived from equine fibroblasts.
Stem cell reviews and reports    February 25, 2011   Volume 7, Issue 3 693-702 doi: 10.1007/s12015-011-9239-5
Nagy K, Sung HK, Zhang P, Laflamme S, Vincent P, Agha-Mohammadi S, Woltjen K, Monetti C, Michael IP, Smith LC, Nagy A.The domesticated horse represents substantial value for the related sports and recreational fields, and holds enormous potential as a model for a range of medical conditions commonly found in humans. Most notable of these are injuries to muscles, tendons, ligaments and joints. Induced pluripotent stem (iPS) cells have sparked tremendous hopes for future regenerative therapies of conditions that today are not possible to cure. Equine iPS (EiPS) cells, in addition to bringing promises to the veterinary field, open up the opportunity to utilize horses for the validation of stem cell based therapi...
Establishing reference genes for use in real-time quantitative PCR analysis of early equine embryos.
Reproduction, fertility, and development    January 8, 2011   Volume 23, Issue 2 353-363 doi: 10.1071/RD10039
Paris DB, Kuijk EW, Roelen BA, Stout TA.Real-time quantitative PCR (qPCR) is invaluable for investigating changes in gene expression during early development, since it can be performed on the limited quantities of mRNA contained in individual embryos. However, the reliability of this method depends on the use of validated stably expressed reference genes for accurate data normalisation. The aim of the present study was to identify and validate a set of reference genes suitable for studying gene expression during equine embryo development. The stable expression of four carefully selected reference genes and one developmentally regula...
In vivo-derived horse blastocysts show transcriptional upregulation of developmentally important genes compared with in vitro-produced horse blastocysts.
Reproduction, fertility, and development    January 8, 2011   Volume 23, Issue 2 364-375 doi: 10.1071/RD10124
Smits K, Goossens K, Van Soom A, Govaere J, Hoogewijs M, Peelman LJ.In vitro-produced (IVP) equine blastocysts can give rise to successful pregnancies, but their morphology and developmental rate differ from those of in vivo-derived equine blastocysts. The aim of the present study was to evaluate this difference at the genetic level. Suppression subtractive hybridisation (SSH) was used to construct a cDNA library enriched for transcripts preferentially expressed in in vivo-derived equine blastocysts compared with IVP blastocysts. Of the 62 different genes identified in this way, six genes involved in embryonic development (BEX2, FABP3, HSP90AA1, MOBKL3, MCM7 a...
Trophoblast stem cell marker gene expression in inner cell mass-derived cells from parthenogenetic equine embryos.
Reproduction (Cambridge, England)    January 5, 2011   Volume 141, Issue 3 321-332 doi: 10.1530/REP-09-0536
Desmarais JA, Demers SP, Suzuki J, Laflamme S, Vincent P, Laverty S, Smith LC.Although putative horse embryonic stem (ES)-like cell lines have been obtained recently from in vivo-derived embryos, it is currently not known whether it is possible to obtain ES cell (ESC) lines from somatic cell nuclear transfer (SCNT) and parthenogenetic (PA) embryos. Our aim is to establish culture conditions for the derivation of autologous ESC lines for cell therapy studies in an equine model. Our results indicate that both the use of early-stage blastocysts with a clearly visible inner cell mass (ICM) and the use of pronase to dissect the ICM allow the derivation of a higher proportion...
Immunohistochemical localization of aromatase during the development and atresia of ovarian follicles in prepubertal horses.
Theriogenology    October 6, 2010   Volume 74, Issue 9 1707-1712 doi: 10.1016/j.theriogenology.2010.04.019
Mlodawska W, Slomczynska M.Ovarian steroidogenesis from the neonatal to pubertal period in horses is poorly understood. This study was designed to immunolocalize cytochrome P450 aromatase in the ovarian follicles of slaughtered fillies ages approximately (I) 6-9 mo (5 mm in diameter. Staining intensity was dependent on the size and morphology of the follicle. In nonatretic follicles 5-10 mm in diameter, the reaction was weak and heterogeneous, while most intense staining was observed in preovulatory follicles. In follicles (diameter <20 mm) in the groups <10MF and 1YF, the reaction was less intense than in adult m...
Chromosomal assignment of R-spondin genes in the donkey (Equus asinus, 2n = 62).
Journal of applied genetics    August 20, 2010   Volume 51, Issue 3 319-321 doi: 10.1007/BF03208861
De Lorenzi L, Genualdo V, Perucatti A, Pia Di Meo G, Molteni L, Iannuzzi L, Parma P.R-spondins constitute a recently discovered small family of growth factors, and the evidence of their role in several developmental pathways is growing fast. In this work we describe the chromosomal location of the four RSPO genes in the donkey. Using horse BACs, we localized RSPO1 on EAS 5q23, RSPO2 on EAS 12q13, RSPO3 on EAS 24q26, and RSPO4 on EAS 15p13. Moreover, RSPO2, RSPO3, and RSPO4 are the first genes mapped on donkey chromosomes 12, 24, and 15, respectively.
A comparative stereological study of the term placenta in the donkey, pony and Thoroughbred.
Theriogenology    May 21, 2010   Volume 74, Issue 4 627-631 doi: 10.1016/j.theriogenology.2010.03.006
Veronesi MC, Villani M, Wilsher S, Contri A, Carluccio A.The aim of the study was to compare horse and donkey placentae using stereological techniques. Term placentae were collected at spontaneous foaling from seven Thoroughbred mares, seven pony mares, and six jenny donkeys. Maternal and foal weights were recorded and the mass, volume, and gross area of each allantochorion was also recorded. Ten random biopsies were recovered and processed for light microscopy from which the surface density of the microcotyledons (S(v)) and the total microscopic area of fetomaternal contact were calculated stereologically. Gestation length was longer in the donkeys...
‘Can you regain your youth?’–the real potential of stem cell technology.
Equine veterinary journal    February 4, 2010   Volume 42, Issue 1 2-4 doi: 10.2746/042516409X474392
Smith RK.No abstract available
Transmission electron microscopy (TEM) of equine conceptuses at 14 and 16 days of gestation.
Reproduction, fertility, and development    January 6, 2010   Volume 22, Issue 2 405-415 doi: 10.1071/RD08280
Walter I, Tschulenk W, Budik S, Aurich C.The present study gives a detailed ultrastructural description of equine conceptuses at Day 14 (n = 2) and Day 16 (n = 3) after ovulation. Whereas on Day 14 only primitive structures were seen, on Day 16 neurulation and formation of mesodermal somites had taken place. The ectoderm of the embryo itself and the surrounding trophoblast ectodermal cells were characterised by specific cell surface differentiations. At the embryonic ectodermal cell surface (14 and 16 days) remarkable protruded and fused cytoplasmic projections were seen, typically associated with macropinocytotic events involved in ...
Successful transfer of day 10 horse embryos: influence of donor-recipient asynchrony on embryo development.
Reproduction (Cambridge, England)    November 30, 2009   Volume 139, Issue 3 575-585 doi: 10.1530/REP-09-0306
Wilsher S, Clutton-Brock A, Allen WR.A total of 78 day 10 horse embryos were transferred non-surgically to recipient mares that had ovulated 9, 7, 6, 5, 4, 3, 2 or 1 day after (negative asynchrony), on the same day (synchronous), or 2 or 4 days before (positive asynchrony) the donor (n=6 or 8 mares per group). Pregnancy rates between 100% (6/6) and 63% (5/8) were seen in recipient mares that were between +2 and -6 days asynchronous. Embryo survival to the heartbeat stage declined in recipients that were -7 days asynchronous and no embryos survived in recipients that were -9 days asynchronous. Irrespective of uterine asynchrony, c...
Hormonal manipulation of endometrial gland development in the horse.
Equine veterinary journal    November 26, 2009   Volume 41, Issue 7 617-618 doi: 10.2746/042516409x467886
Spencer TE.No abstract available
A review of implantation and early placentation in the mare.
Placenta    October 22, 2009   Volume 30, Issue 12 1005-1015 doi: 10.1016/j.placenta.2009.09.007
Allen WR, Wilsher S.Constant, self induced mobility throughout the uterine lumen between days 6 and 17 after ovulation, complete envelopment by a self-secreted glycoprotein capsule between days 7 and 30 and 'injection' of specialised, gonadotrophin-secreting trophoblast cells into the maternal endometrium at days 35-37 are three unusual aspects of equine embryogenesis. The outer trophoblast layer of the allantochorion finally establishes a stable, microvillous contact with the lumenal epithelium of the endometrium around days 40-42 and placentation commences thereafter. The allantochorion elongates steadily until...
The molecular phylogeny of uterine serpins and its relationship to evolution of placentation.
FASEB journal : official publication of the Federation of American Societies for Experimental Biology    October 13, 2009   Volume 24, Issue 2 526-537 doi: 10.1096/fj.09-138453
Padua MB, Kowalski AA, Cañas MY, Hansen PJ.Uterine serpins (USs), designated as SERPINA14, are expressed in the endometrium in response to progesterone. All species identified as having USs exhibit epitheliochorial placentation and are in the Ruminantia and Suidae orders of the Laurasiatheria superorder. The objective was to identify US genes in species within and outside Laurasiatheria and evaluate whether evolution of the US gene was associated with development of the epitheliochorial placenta. Through queries of nucleotide and genomic databases, known US genes were identified (caprine, bovine, porcine, water buffalo), and new US cod...
The new framework for understanding placental mammal evolution.
BioEssays : news and reviews in molecular, cellular and developmental biology    July 8, 2009   Volume 31, Issue 8 853-864 doi: 10.1002/bies.200900053
Asher RJ, Bennett N, Lehmann T.An unprecedented level of confidence has recently crystallized around a new hypothesis of how living placental mammals share a pattern of common descent. The major groups are afrotheres (e.g., aardvarks, elephants), xenarthrans (e.g., anteaters, sloths), laurasiatheres (e.g., horses, shrews), and euarchontoglires (e.g., humans, rodents). Compared with previous hypotheses this tree is remarkably stable; however, some uncertainty persists about the location of the placental root, and (for example) the position of bats within laurasiatheres, of sea cows and aardvarks within afrotheres, and of der...
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