864
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Effects of short photoperiod on cashmere growth, hormone concentrations and hair follicle development-related gene expression in cashmere goats

, , , , , , , & show all
Pages 52-61 | Received 16 Jun 2022, Accepted 27 Nov 2022, Published online: 12 Jan 2023

References

  • Ahn, S.-Y., Pi, L.-Q., Hwang, S.T., Lee, W.-S., 2012. Effect of IGF-I on hair growth is related to the anti-apoptotic effect of IGF-I and up-regulation of PDGF-A and PDGF-B. Ann Dermatol. 24, 26-31. doi:10.5021/ad.2012.24.1.26
  • Andl, T., Reddy, S.T., Gaddapara, T., Millar, S.E., 2002. WNT signals are required for the initiation of hair follicle development. Dev Cell 2, 643-653. doi:10.1016/S1534-5807(02)00167-3
  • Ansari-Renani, H., Ebadi, Z., Moradi, S., Baghershah, H., Ansari-Renani, M., Ameli, S., 2011. Determination of hair follicle characteristics, density and activity of Iranian cashmere goat breeds. Small Ruminant Res 95, 128-132. doi:10.1016/j.smallrumres.2010.09.013
  • Bai, W. L., Dang, Y. L., Wang, J. J., Yin, R. H., Wang, Z. Y., Zhu, Y. B., Cong, Y. Y., Xue, H. L., Deng, L., Guo, D., Wang, S. Q., Yang, S. H. 2016. Molecular characterization, expression and methylation status analysis of BMP4 gene in skin tissue of Liaoning cashmere goat during hair follicle cycle. Genetica, 144(4): 457-467. doi:10.1007/s10709-016-9914-1
  • Bai, W.L., Yin, R.H., Yin, R.L., Jiang, W.Q., Wang, J.J., Wang, Z.Y., Zhu, Y.B., Zhao, Z.H., Yang, R.J., Luo, G.B., He, J.B., 2014. Selection and validation of suitable reference genes in skin tissue of Liaoning cashmere goat during hair follicle cycle. Livest Sci 161, 28–35. doi:10.1016/j.livsci.2013.12.031
  • Bedrosian, T.A., Herring, K.L., Walton, J.C., Fonken, L.K., Weil, Z.M., Nelson, R.J., 2013. Evidence for feedback control of pineal melatonin secretion. Neurosci Lett 542, 123–125. doi:10.1016/j.neulet.2013.03.021
  • Blanpain, C., Fuchs, E., 2006. Epidermal stem cells of the skin. Annu Rev Cell Dev Biol. 22, 339-373. doi:10.1146/annurev.cellbio.22.010305.104357
  • Botchkarev, V.A., Kishimoto, J., 2003. Molecular control of epithelial–mesenchymal interactions during hair follicle cycling. J Investig Dermatol Symp Proc, pp. 46-55. doi:10.1046/j.1523-1747.2003.12171.x
  • Cassone, V.M., 1990. Effects of melatonin on vertebrate circadian systems. Trends Neurosci 13, 457-464. doi:10.1016/0166-2236(90)90099-V
  • Chanda, S., Robinette, C.L., Couse, J.F., Smart, R.C., 2000a. 17beta-estradiol and ICI-182780 regulate the hair follicle cycle in mice through an estrogen receptor-alpha pathway. Am J Physiol Endocrinol Metab 278, E202-E210. doi:10.1152/ajpendo.2000.278.2.E202
  • Chanda, S., Robinette, C.L., Couse, J.F., Smart, R.C., 2000b. 17β-Estradiol and ICI-182780 regulate the hair follicle cycle in mice through an estrogen receptor-α pathway. Am J Physiol Endocrinol Metab 278, E202-E210. doi:10.1152/ajpendo.2000.278.2.E202
  • Cong, Y., Deng, H., Feng, Y., Chen, Q., Sun, Y., 2011. Melatonin implantation from winter solstice could extend the cashmere growth phase effectively. Small Ruminant Res 99, 48-53. doi:10.1016/j.smallrumres.2011.03.055
  • Craven, A.J., Ormandy, C.J., Robertson, F.G., Wilkins, R.J., Kelly, P.A., Nixon, A.J., Pearson, A.J., 2001. Prolactin signaling influences the timing mechanism of the hair follicle: analysis of hair growth cycles in prolactin receptor knockout mice. Endocrinology 142, 2533-2539. doi:10.1210/endo.142.6.8179
  • Cutando, A., Aneiros-Fernández, J., López-Valverde, A., Arias-Santiago, S., Aneiros-Cachaza, J., Reiter, R.J., 2011. A new perspective in oral health: potential importance and actions of melatonin receptors MT1, MT2, MT3, and RZR/ROR in the oral cavity. Arch Oral Biol 56, 944-950. doi:10.1016/j.archoralbio.2011.03.004
  • Dicks, P., Morgan, C., Morgan, P.J., Kelly, D., Williams, L., 1996. The localisation and characterisation of insulin-like growth factor-I receptors and the investigation of melatonin receptors on the hair follicles of seasonal and non-seasonal fibre-producing goats. J Endocrinol 151, 55-63. doi:10.1677/joe.0.1510055
  • Dicks, P., Russel, A., Lincoln, G., 1994. The role of prolactin in the reactivation of hair follicles in relation to moulting in cashmere goats. J Endocrinol 143, 441-448. doi:10.1677/joe.0.1430441
  • Dicks, P., Russel, A., Lincoln, G., 1995. The effect of melatonin implants administered from December until April, on plasma prolactin, triiodothyronine and thyroxine concentrations and on the timing of the spring moult in cashmere goats. Anim Sci 60, 239-247 doi:10.1017/S1357729800008407
  • Duan, C., Xu, J., Zhang, Y., Zhang, W., Sun, Y., Jia, Z., 2017. Effects of melatonin implantation on cashmere growth, hormone concentrations and cashmere yield in cashmere-perennial-type Liaoning cashmere goats. Anim Prod Sci 57, 60-64. doi:10.1071/AN15183.
  • Emesih, G., Newton, G., Teh, T., Zia, J.-H., 1993. Effects of photoperiod and continuous administration of melatonin on plasma concentrations of prolactin in cashmere goats. Small Ruminant Res 11, 247-256. doi:10.1016/0921-4488(93)90049-N
  • Feng, Y., Gun, S., 2021. Melatonin supplement induced the hair follicle development in offspring rex rabbits. J Anim Physiol Anim Nutr (Berl) 105, 167-174. doi:10.1111/jpn.13417
  • Fischer, T.W., Slominski, A., Tobin, D.J., Paus, R., 2008. Melatonin and the hair follicle. J Pineal Res 44, 1-15. doi:10.1111/j.1600-079X.2007.00512.x
  • Foitzik, K., Krause, K., Conrad, F., Nakamura, M., Funk, W., Paus, R., 2006. Human scalp hair follicles are both a target and a source of prolactin, which serves as an autocrine and/or paracrine promoter of apoptosis-driven hair follicle regression. Am J Pathol 168, 748-756. doi:10.2353/ajpath.2006.050468
  • Fu, J., Hsu, W., 2013. Epidermal Wnt controls hair follicle induction by orchestrating dynamic signaling crosstalk between the epidermis and dermis. J Invest Dermatol 133, 890-898. doi:10.1038/jid.2012.407
  • Gruber, H.E., Norton, H.J., Hanley Jr, E.N., 2000. Anti-apoptotic effects of IGF-1 and PDGF on human intervertebral disc cells in vitro. Spine 25, 2153-2157. doi:10.1097/00007632-200009010-00002
  • Higgins, C., Petukhova, L., Harel, S., Ho, Y.-Y., Drill, E., Shapiro, L., Wajid, M., Christiano, A., 2014. FGF5 is a crucial regulator of hair length in humans. Proc Natl Acad Sci U S A 111. doi:10.1073/pnas.1402862111
  • Kamp, H., Geilen, C., Sommer, C., Blume-Peytavi, U., 2003. Regulation of PDGF and PDGF receptor in cultured dermal papilla cells and follicular keratinocytes of the human hair follicle. Exp Dermatol 12, 662-672. doi:10.1034/j.1600-0625.2003.00089.x
  • Kandyba E, Leung Y, Chen Y B, Widelitz R, Chuong C M, Kobielak K. 2013. Competitive balance of intrabulge BMP/Wnt signaling reveals a robust gene network ruling stem cell homeostasis and cyclic activation. Proc Natl Acad Sci U S A, 110(4): 1351-1356. doi:10.1073/pnas.1121312110
  • Karasek, M., Gruszka, A., Lawnicka, H., Kunert-Radek, J., Pawlikowski, M., 2003. Melatonin inhibits growth of diethylstilbestrol-induced prolactin-secreting pituitary tumor in vitro: possible involvement of nuclear RZR/ROR receptors. J Pineal Res 34, 294-296. doi:10.1034/j.1600-079X.2003.00046.x
  • Kloren, W., Norton, B., 1993. Fleece growth in Australian cashmere goats. IV. The role of prolactin in the initiation and cessation of cashmere growth. Aust J Agric Res 44, 1051-1061. doi:10.1071/AR9931051
  • Klören, W., Norton, B., 1995. Melatonin and fleece growth in Australian cashmere goats. Small Ruminant Res 17, 179-185. doi:10.1016/0921-4488(95)00659-9
  • Kloren, W., Norton, B., Waters, M., 1993. Fleece growth in Australian cashmere goats. III. The seasonal patterns of cashmere and hair growth, and association with growth hormone, prolactin and thyroxine in blood. Aust J Agric Res 44, 1035-1050. doi:10.1071/AR9931035
  • Liu, B., Gao, F., Guo, J., Wu, D., Hao, B., Li, Y., Zhao, C., 2016. A microarray-based analysis reveals that a short photoperiod promotes hair growth in the Arbas cashmere goat. PloS one 11, e0147124. doi:10.1371/journal.pone.0147124
  • Liu, H., Liu, C., Yang, G., Li, H., Dai, J., Cong, Y., Li, X., 2012. DNA polymorphism of insulin-like growth factor-binding protein-3 gene and its association with cashmere traits in cashmere goats. Asian-Australas J Anim Sci 25, 1515. doi:10.5713/ajas.2012.12351
  • Ma, H., Kang, J., Fan, W., He, H., Huang, F., 2021. ROR: nuclear receptor for melatonin or not? Molecules 26, 2693. doi:10.3390/molecules26092693
  • Martinez-Campa, C., Alonso-González, C., Mediavilla, M., Cos, S., Gonzalez, A., Ramos, S., Sánchez-Barceló, E., 2006. Melatonin inhibits both ERα activation and breast cancer cell proliferation induced by a metalloestrogen, cadmium. J Pineal Res 40, 291-296. doi:10.1111/j.1600-079X.2006.00315.x
  • McDonald, B., Hoey, W., 1987. Effect of photo-translation on fleece growth in cashmere goats. Aust J Agric Res 38, 765-773. doi:10.1071/AR9870765
  • Millar, S.E., 2002. Molecular mechanisms regulating hair follicle development. J Invest Dermatol 118, 216-225. doi:10.1046/j.0022-202x.2001.01670.x
  • Morammazi, S., Masoudi, A.A., Vaez Torshizi, R., Pakdel, A., 2016. Changes in the expression of the prolactin receptor (PRLR) gene in different physiological stages in the mammary gland of the Iranian adani goat. Reprod Domest Anim  Zuchthyg 51, 585-590. doi:10.1111/rda.12723
  • Movérare, S., Lindberg, M.K., Ohlsson, C., Faergemann, J., Gustafsson, J.-Å., 2002. Estrogen receptor α, but not estrogen receptor β, is involved in the regulation of the hair follicle cycling as well as the thickness of epidermis in Male mice. J Invest Dermatol 119, 1053-1058. doi:10.1046/j.1523-1747.2002.00637.x
  • Myllylä R M, Haapasaari K M, Lehenkari P, Tuukkanen J. 2014. Bone morphogenetic proteins 4 and 2/7 induce osteogenic differentiation of mouse skin derived fibroblast and dermal papilla cells. Cell Tissue Res, 355(2): 463-470. doi:10.1007/s00441-013-1745-0
  • Nixon, A., Ford, C., Wildermoth, J., Craven, A., Ashby, M., Pearson, A., 2002. Regulation of prolactin receptor expression in ovine skin in relation to circulating prolactin and wool follicle growth status. J Endocrinol 172, 605-614. doi:10.1677/joe.0.1720605
  • Nixon, A.J., Choy, V.J., Parry, A.L., Pearson, A.J., 1993. Fiber growth initiation in hair follicles of goats treated with melatonin. J Exp Zool 267, 47-56. doi:10.1002/jez.1402670108
  • Ohnemus, U., Uenalan, M., Conrad, F., Handjiski, B., Mecklenburg, L., Nakamura, M., Inzunza, J., Gustafsson, J.-A.K., Paus, R., 2005. Hair cycle control by estrogens: catagen induction via estrogen receptor (ER)-α is checked by ERβ signaling. Endocrinology 146, 1214-1225. doi:10.1002/jez.1402670108
  • Pazzaglia, I., Mercati, F., Antonini, M., Capomaccio, S., Cappelli, K., Dall’Aglio, C., La Terza, A., Mozzicafreddo, M., Nocelli, C., Pallotti, S., Pediconi, D., Renieri, C., 2019. PDGFA in cashmere goat: a motivation for the hair follicle stem cells to activate. Animals (Basel) 9, 38. doi:10.3390/ani9020038
  • Plikus, M.V., Baker, R.E., Chen, C.C., Fare, C., de la Cruz, D., Andl, T., Maini, P.K., Millar, S.E., Widelitz, R., Chuong, C.M., 2011. Self-Organizing and stochastic behaviors during the regeneration of hair stem cells. Science 332, 586-589. doi:10.1126/science.1201647
  • Plikus, M.V., Mayer, J.A., de La Cruz, D., Baker, R.E., Maini, P.K., Maxson, R., Chuong, C.-M., 2008. Cyclic dermal BMP signalling regulates stem cell activation during hair regeneration. Nature 451, 340. doi:10.1038/nature06457
  • Rhind, S., McMillen, S., 1995. Seasonal changes in systemic hormone profiles and their relationship to patterns of fibre growth and moulting in goats of contrasting genotypes. Aust J Agric Res 46, 1273-1283. doi:10.1071/AR9951273
  • Rile, N., Liu, Z., Gao, L., Qi, J., Zhao, M., Xie, Y., Su, R., Zhang, Y., Wang, R., Li, J., Xiao, H., Li, J., 2018. Expression of vimentin in hair follicle growth cycle of inner Mongolian cashmere goats. BMC Genomics 19, 38. doi:10.1186/s12864-017-4418-7
  • Rose, J., Stormshak, F., Oldfield, J., Adair, J., 1985. The effects of photoperiod and melatonin on serum prolactin levels of mink during the autumn molt. J Pineal Res 2, 13-19
  • Silva-Vargas, V., Celso, C.L., Giangreco, A., Ofstad, T., Prowse, D.M., Braun, K.M., Watt, F.M., 2005. β-catenin and hedgehog signal strength can specify number and location of hair follicles in adult epidermis without recruitment of bulge stem cells. Dev Cell 9, 121-131. doi:10.1111/j.1600-079X.1985.tb00624.x
  • Suzuki, K., Yamaguchi, Y., Villacorte, M., Mihara, K., Akiyama, M., Shimizu, H., Taketo, M.M., Nakagata, N., Tsukiyama, T., Yamaguchi, T.P., 2009. Embryonic hair follicle fate change by augmented β-catenin through Shh and Bmp signaling. Development 136, 367-372. doi:10.1242/dev.021295
  • Wang, L., Cai, T., Ou, Y.X.Q., Zu, H. L., Zhao, Y. H. 2013. Research progress on physiological functions of melatonin nuclear receptor RORα and Its relation to the growth of cashmere. Chin J Anim Sci 49, 75-79. doi:10.3969/j.issn.0258-7033.2013.21.020
  • Welch, R., Gurnsey, M., Betteridge, K., Mitchell, R., 1990. Goat fibre response to melatonin given in spring in two consecutive years. Proceedings of the New Zealand Society of Animal Production, pp. 335–338.
  • Yang, C.H., Xu, J.H., Ren, Q.C., Duan, T., Mo, F., Zhang, W., 2019. Melatonin promotes secondary hair follicle development of early postnatal cashmere goat and improves cashmere quantity and quality by enhancing antioxidant capacity and suppressing apoptosis. J Pineal Res 67, e12569. doi:10.1111/jpi.12569
  • Zhang, C.Z., Sun, H.Z., Li, S.L., Sang, D., Zhang, C.H., Jin, L., Antonini, M., Zhao, C.F., 2019. Effects of photoperiod on nutrient digestibility, hair follicle activity and cashmere quality in Inner Mongolia white cashmere goats. Asian-Australas J Anim Sci 32, 541-547. doi:10.5713/ajas.18.0154
  • Zhang, Y., Wu, K., Wang, L., Wang, Z., Han, W., Chen, D., Wei, Y., Su, R., Wang, R., Liu, Z., 2020. Comparative study on seasonal hair follicle cycling by analysis of the transcriptomes from cashmere and milk goats. Genomics 112, 332-345. doi:10.1016/j.ygeno.2019.02.013
  • Zhao, Y., Liu, Z., Wang, L., Xiao, H., Du, C., Zhang, Y., Su, R., Li, J., 2015. Expression of the RORα gene in inner Mongolian cashmere goat hair follicles. Genet Mol Res 14, 380-388. doi:10.4238/2015.January.23.11
  • Zimmerman, L.B., De Jesús-Escobar, J.M., Harland, R.M., 1996. The Spemann organizer signal noggin binds and inactivates bone morphogenetic protein 4. Cell 86, 599-606. doi:10.1016/S0092-8674(00)80133-6