2010, Number 2
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Vet Mex 2010; 41 (2)
Induction of ovarian activity with artificial photoperiod in criollo mares located at 19º9'N
López PLM, Zarco QL, Boeta AAM
Language: English/Spanish
References: 26
Page: 89-100
PDF size: 353.88 Kb.
ABSTRACT
The objective of this study was to evaluate the effect of an artificially long photoperiod of 16 h of light and eight h of darkness on the length of the seasonally anovulatory period and the duration of the transitional period to ovarian activity in Criollo mares, located at 19º 9'N latitude. Twenty two adult Criollo mares, from three to 17 years old, were randomly divided in two groups. The animals on the experimental group (n = 14) were exposed to 16 h of light per day during four months from December to March. The control mares (n = 8) were exposed only to the natural photoperiod in open pens. The interval from the beginning of the artificial light treatment (December 1) to the first ovulation of the year in the experimental group was 88.4 ± 3.6 days and for the control group,137.2 ± 15.0 days (P ‹ 0.01); the interval between the development of the first follicle larger than 30 mm and the first ovulation (vernal transition) was 30.9 ± 2.2 days for the experimental group and 37.6 ± 6.6 days for the control group, this difference was not significant (P › 0.05). The mean diameter of the largest follicle increased gradually from week seven in the experimental group and from week 13, in the control group. Mares from both groups showed anovulatory estrus during the anovulatory season as well as during the transitional period. In the majority of the cases, estrous periods were irregular. The results indicate that exposure to an artificially photoperiod of 16 h of light and eight h of darkness, advances the onset of the vernal transition and the first ovulation in Criollo mares located at latitudes that are relatively close to the equator (19º 9'N); therefore, it can be used to anticipate the beginning of a reproductive program.
REFERENCES
GUERIN M, WANG X. Environmental temperature has an influence on timing of the first ovulation of seasonal estrus in the mare”. Theriogenology 1994;42:1053-1060.
FITZGERALD BP, MCMANUS CJ. Photoperiodic versus metabolic signals as determinants of seasonal anestrus in the mare. Biol Reprod 2000;63:335-340.
NAGY P, GUILLAUME D, DAELS P. Seasonality in mares. Anim Reprod Sci 2000; 60-61: 245-262.
GINTHER OJ. “Reproductive Biology of the Mare”. Wisconsin, USA: Ed. Equiservices Publishing, Cross Plains, 1992.
SHARP DC. Horse. In: KNOBILL E, NEILL JD, Encyclopedia of Reproduction. Vol. 2. San Diego Ca.,USA: Ed. Academic Press, 1998: 680-693.
BOETA M, PORRAS A, ZARCO L, AGUIRRE-HERNANDEZ R. Ovarian activity of the mare during winter and spring at a latitude of 19º21' North. J Equine Vet Sci 2006;26:55-58.
HART PJ, SQUIRES EL, IMEL KJ, NETT TM. Seasonal variation in hypothalamic content of gonadotropinreleasing hormone (GnRH), pituitary receptors for GnRH, and pituitary content of luteinizing hormone and follicle-stimulating hormone in the mare. Biol Reprod 1984;30:1055-1062.
DAELS PF, BESOGNET B. Manipulation of the estrous cycle in the mare: clinical aspects. Reprod Dom Anim 1998;33:101-102.
MALINOWKI K, JOHNSON AL, SCANES CG. Effects of interrupted photoperiods on the induction of ovulation in anestrous mares. J Anim Sci 1985;61:951-955.
OXENDER WD, NODEN PA, HAFS HD. Estrus, ovulation and serum progesterone, estradiol, and LH concentrations in mares after an increased photoperiods during winter. Anim J Vet Res 1977;38:203-207.
VÁZQUEZ-DUEÑAS S, ESCOBAR-MEDINA FJ, COLINA-FLORES F, HAYEN-VALLES S. Comportamiento reproductivo de yeguas Pura Sangre Inglés en un criadero de partos al principio del año. Rev Biomed 2004;15:27-31.
SALTIEL A, CALDERON A, GARCIA N, HURLEY DP. Ovarian activity in the mare between latitude 15º and 22º N. J Reprod Fertil Suppl 1982;32:261-267.
GONZÁLEZ FM, VALENCIA MJ. Estudio del comportamiento reproductivo de la yegua en México. Vet Méx 1977;8:19-23.
KOSKINEN E, HUNTINEN M, KATILA T. Serum progesterone levels in mare in winter and during transitional periods. Acta Vet Scand 1996;37:409-414.
DONADEU FX, WATSON ED. Seasonal changes in ovarian activity: lessons learnt from the horse. Anim Reprod Sci 2007;100:225-242.
ARTHUR GH. An analysis of the reproductive function of mares based on post mortem examination. Vet Rec 1958;70:682-686.
FREEDMAN LJ, GARCIA MC, GINTHER OJ. Influence of photoperiod and ovaries on seasonal reproductive activity in mares. Biol Reprod 1979;20:567-574.
GINTHER OJ. Ocurrence of anestrus, estrus, diestrus, and ovulation over 12-month period in mares. Am J Vet Res 1974;35:1173-11179.
SCRABA ST, GINTHER OJ. Effects of lighting programs on onset of the ovulatory season in mares. Theriogenology 1985;24:667-679.
PALMER E, DRIANCOURT MA, ORTAVANT R. Photoperiodic stimulation of the mare during winter anoestrus. J Reprod Fertil Suppl 1982;32:275-282.
CARNEVALE EM, HERMENET MJ, GINTHER OJ. Age and pasture effects on vernal transition in mare. Theriogenology 1997;47:1009-1018.
WESSON JA, GINTHER OJ. Puberty in the female pony: Reproductive behavior, ovulation, and plasma gonadotropin concentrations. Biol Reprod 1981;24:977-986
GINTHER OJ. Folliculogenesis during the transitional period and early ovulatory season in mares. J Reprod Fert 1990;90:311-320.
DONADEU FX, GINTHER OJ. Changes in concentrations of follicular fluid factors during follicle selection in mares. Biol Reprod 2002; 66: 1111-1118.
WATSON ED, Al-Zi`abi MO. Characterization of morphology and angiogenesis in follicles of mares during spring transition and the breeding season. Reproduction 2002;124: 227-234.
IRVINE CHG, ALEXANDER SL. Managing the mare for optimal fertility. J Equine Sci 1998;9:83-87.