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The effect of melatonin treatment on fur maturation period and hair follicle cycle in growing chinchillas

Published online by Cambridge University Press:  18 August 2016

J. Lanszki*
Affiliation:
University of Kaposvár, Faculty of Animal Science, PO Box 16, 7401 Kaposvár, Hungary 2INRA
D. Allain
Affiliation:
SAGA, BP 27, 31326 Castanet-Tolosan Cedex, France
R.-G. Thébault
Affiliation:
INRA, Génétique Animale Phanères, Le Magneraud, BP 52, 17700 Surgères, France
Zs. Szendrö
Affiliation:
University of Kaposvár, Faculty of Animal Science, PO Box 16, 7401 Kaposvár, Hungary 2INRA
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Abstract

The effect of melatonin treatment on fur maturation period and hair follicle cycle in 4-month-old male and female chinchillas, kept under conditions of natural photoperiod, was studied. The animals were treated with continuous-release implants of melatonin (18 mg, group M, no. = 56), while no treatment was given to the control (group C, no. = 69). The effect on hair follicle activity cycle under conditions of normal hair growth (no. = 8) and after defleecing (no. = 8) and on number of hair fibres per follicle bundle (no. = 27) were measured by taking skin samples for histological examination once a month. The age at fur priming was reduced by 31 days (P < 0001) in the melatonin-treated chinchillas. When moulting began during the short-day period, the fur reached maturity 13 days (P < 005) sooner than when the moult began during the long-day period. Melatonin administration proved to be effective in these two periods. Melatonin treatment led to hair follicle activity decreasing at a faster rate, and the differences between treated and control groups from day 60 were significant (P < 005). The primary and secondary hair follicles reached the telogen phase 30 days earlier. Due to melatonin administration more fibres per follicle bundle were observed on the matured pelt (P < 005). At 4 months of age, following the removal of hair by defleecing, the growth of the first adult hair was studied without the presence of young-age hairs. No influence of defleecing as opposed to normal hair development on age at fur maturation or on the number of fibres per hair follicle bundle was observed. Within groups M and C the number of fibres per hair follicle bundle proved to be independent of age at first fur priming. No substantial differences between the groups were observed with respect to either body weight or pelt length at the time of pelting. According to these results, melatonin administration is effective in shortening the coat maturation period in growing chinchillas and causing corresponding changes in the hair follicle cycle.

Type
Research Article
Copyright
Copyright © British Society of Animal Science 2002

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References

Allain, D. and Deletang, F. 1988. Interaction of age, strain and date of melatonin administration in the control of winter coat growth in mink. Proceedings of the fourth international congress in fur animal production, Rexdale, Ontario, Canada, pp. 471480.Google Scholar
Allain, D., Martinet, L. and Rougeot, J. 1981. Effects of melatonin implants on changes in the coat, plasma prolactin level and testis cycle in the mink (Mustela vison). In Photoperiodism and reproduction (ed. Ortravant, R., Pelletier, J. and Ravault, J. P.), INRA colloquium no. 6, pp. 263271.Google Scholar
Allain, D., Ravault, J. P., Panaretto, B. A. and Rougeot, J. 1986. Effects of pinealectomy on photoperiodic control of hair follicle activity in the Limousine ram: possible relationship with plasma prolactin levels. Journal of Pineal Research 3: 2532.CrossRefGoogle ScholarPubMed
Allain, D. and Rougeot, J. 1980. Induction of autumn moult in mink (Mustela vison Peale and Beauvois) with melatonin. Reproduction, Nutrition, Développement 20: 197201.CrossRefGoogle ScholarPubMed
Arendt, J. 1995. Melatonin and the mammalian pineal gland. Chapman and Hall, London.Google Scholar
Blomstedt, L. 1992. Pelage growth and structure in fur animals. (Why is pelt research necessary?). Norwegian Journal of Agricultural Sciences 9: (suppl. ) 577585.Google Scholar
Blomstedt, L. 1998. Pelage development in mink, ferret and blue fox and some influencing factors. Ph.D. thesis, University of Helsinki. Google Scholar
Choy, V. J., Nixon, A. J. and Pearson, A. J. 1997. Distribution of prolactin receptor immunoreactivity in ovine skin and changes during the wool follicle growth cycle. Journal of Endocrinology 155: 265275.CrossRefGoogle ScholarPubMed
Dicks, P., Russel, A. J. F. and Lincoln, G. A. 1995. The effect of melatonin implants administered from December until April, on plasma prolactin, triidothyronine and thyroxine concentrations and on the timing of the spring moult in cashmere goats. Animal Science 60: 239247.CrossRefGoogle Scholar
Forsberg, M., Fougner, J. A., Hofmo, P. O. and Einarsson, E. J. 1990. Effects of melatonin implants on reproduction in the male silver fox (Vulpes vulpes). Journal of Reproduction and Fertility 88: 383388.CrossRefGoogle ScholarPubMed
Forsyth, I. A., Barker, P., Keable, S. and Turvey, A. 1994. Identification of prolactin receptors in hair follicles of the goat using an antipeptide antibody. Journal of Reproduction and Fertility, Abstract Series 14: 14 (abstr.).Google Scholar
Forsyth, I. A., Gebbie, F. E. and Arendt, J. 1997. Timing of melatonin treatment: differential effects on oestrus and coat growth in goats. Animal Science 65: 267273.CrossRefGoogle Scholar
Gebbie, F. E., Forsyth, I. A. and Arendt, J. 1999. Effects of maintaining solstice light and temperature on reproductive activity, coat growth, plasma prolactin and melatonin in goats. Journal of Reproduction and Fertility 116: 2533.CrossRefGoogle ScholarPubMed
Hynd, P. I. 2000. The nutritional biochemistry of wool and hair follicles. Animal Science 70: 181195.CrossRefGoogle Scholar
Lanszki, J., Jauk, E. and Bognár, Z. 1998. Examination of traits related to prolificacy and suckling ability in chinchillas (Chinchilla laniger). Scientifur 3: 219223.Google Scholar
Lanszki, J., Thébault, R. G., Allain, D., Szendrö_Zs., and Eiben, Cs. 2001. The effects of melatonin treatment on wool production and hair follicle cycle in angora rabbits. Animal Research 1: 7989.CrossRefGoogle Scholar
Lincoln, G. A. 1990. Correlation with changes in horns and pelage, but not reproduction, of seasonal cycles in the secretion of prolactin in rams of wild, feral and domesticated breeds of sheep. Journal of Reproduction and Fertility 90: 285296.CrossRefGoogle Scholar
Lincoln, G. A. 1998. Photoperiod-melatonin relay in deer. Acta Veterinaria Hungarica 46: 341356.Google ScholarPubMed
Lincoln, G. A. and Ebling, F. J. P. 1985. Effect of constantrelease implants of melatonin on seasonal cycles in reproduction, prolactin secretion and moulting in rams. Journal of Reproduction and Fertility 73: 241253.CrossRefGoogle ScholarPubMed
Lincoln, G. A., Klandorf, H. and Anderson, J. 1980. Photoperiodic control of thyroid function and wool and horn growth in rams and the effect of cranial sympathectomy. Endocrinology 107: 15431548.CrossRefGoogle ScholarPubMed
Lynch, P. and Russel, A. F. J. 1989. The endocrine control of fibre growth and shedding in cashmere goats. Animal Production 48: 632-633 (abstr.).Google Scholar
Lyne, A. G. 1965. The hair cycle in the chinchilla. Australian Journal of Biological Sciences 29: 467489.Google Scholar
Martinet, L. and Allain, D. 1985. Role of the pineal gland in the photoperiodic control of reproductive and non-reproductive functions in mink (Mustela vison). In Photoperiodism, melatonin and the pineal. Ciba Foundation symposium 117, pp. 170187. Pitman, London.Google ScholarPubMed
Pearson, A. J., Ashby, M. G. and Staples, L. D. 1989. Effect of melatonin on body weight, appetite and seasonal fur growth in the ferret. Proceedings of the New Zealand Society of Animal Production 49: 4752.Google Scholar
Rose, J., Oldfield, J. and Stormshak, F. 1987. Apparent role of melatonin and prolactin in initiating winter fur growth in mink. General and Comparative Endocrinology 65: 212215.CrossRefGoogle ScholarPubMed
Rougeot, J. and Thébault, R. G. 1989. Le lapin angora, sa toison, son élevage. Les Éditions du point Veterinaire, Maison-Alfort.Google Scholar
Rougeot, J., Thébault, R. G. and Allain, D. 1986. Suppression de la chute estivale de la production du poil chez la lapine angora par la pose d’implants de melatonine. Annales de Zootechnie 35: 363372.CrossRefGoogle Scholar
Rust, C. C. and Meyer, R. K. 1969. Hair color moult and testis size in male short-tailed weasels with melatonin. Science 165: 921922.CrossRefGoogle ScholarPubMed
Smith, A. J., Mondain-Monval, M., Berg, K. A., Simon, P., Forsberg, M., Clausen, O. P. F., Hansen, T., Moller, O. M. and Scholler, R. 1987. Effects of melatonin implantation on spermatogenesis, the moulting cycle and plasma concentrations of melatonin, LH, prolactin and testosterone in the male blue fox (Alopex lagopus). Journal of Reproduction and Fertility 79: 379390.CrossRefGoogle ScholarPubMed
Statistial Packages for the Social Sciences. 1997. Base 7·5 for Windows. User’s guide. SPSS Inc., Chicago.Google Scholar
Valtonen, M., Jalkanen, L. and Blomstedt, L. 1990. Possible use of melatonin in fur animal production. Proceedings of the third international symposium of fur animal science, Leipzig, pp. 99106.Google Scholar
Valtonen, M., Vakkuri, O. and Blomstedt, L. 1992. Circannual melatonin rhythm in mink and its significance in fur growth and reproduction. Norwegian Journal of Agricultural Sciences 9: (suppl.) 586592.Google Scholar
Valtonen, M., Vakkuri, O. and Blomstedt, L. 1995. Autumnal timing of photoperiodic manipulation critical via melatonin to winter pelage development in mink. Animal Science 61: 589596.CrossRefGoogle Scholar
Weir, B. J. 1974. Reproductive characteristics of hystricomorph rodents. Symposia of the Zoological Society of London 34: 437446.Google Scholar
Wilcox, H. H. 1950. Histology of the skin and hair of the adult chinchilla. The Anatomical Record 108: 385397.CrossRefGoogle ScholarPubMed
Xiao, Y., Forsberg, M., Laitinen, J. T. and Valtonen, M. 1996. Effects of melatonin implants on winter fur growth and testicular recrudescence in adult male raccoon dogs (Nyctereutes procyonoides). Journal of Pineal Research 20: 148156.CrossRefGoogle ScholarPubMed