MORFOFISIOLOGIA OVARIANA COMPARADA ENTRE MAMÍFEROS E PEIXES TELEÓSTEOS
Palavras-chave:
Foliculogênese, oogênese, modelos animais, vitelogêneseResumo
A experimentação animal é fundamental para a evolução dos conhecimentos científicos a respeito da reprodução
das espécies. Mamíferos, como ratos e camundongos, são amplamente utilizados e sua contribuição é bem
estabelecida. Entretanto, modelos mamíferos exigem um custo elevado de manutenção e maior discrepância em
avaliações em grupo quando comparados a algumas espécies de peixes. Neste sentido, há um aumento na utilização
de modelos alternativos, como é o caso do zebrafish (Danio rerio) e medaka (Oryzias latipes). A utilização destas
espécies de peixes teleósteos em substituição ao modelo mamífero tem causado questionamentos acerca da
viabilidade da substituição, considerando a distinção entre esses grupos de vertebrados, especialmente a respeito
da morfologia e fisiologia reprodutiva de tais grupos (mamíferos e peixes). Por esta razão, estudos referentes a
semelhança entre a biologia reprodutiva dessas espécies com o intuito de comparar ambos os modelos, se fazem
de extrema importância no âmbito da reprodução humana e animal. Neste contexto, a presente revisão buscará
caracterizar as estruturas anatômicas e fisiológicas dos aparelhos reprodutivos das fêmeas de mamíferos e peixes,
com foco para o epitélio germinativo, os processos de oogênese e foliculogênese, incluindo os fatores envolvidos
no desenvolvimento folicular e formação da zona pelúcida, bem como na maturação oocitária e ovulação
Referências
ABASCAL, F.J.; MEDINA, A. Ultrastructure of oogenesis in the Bluefin Tuna, Thunnus Thynnus Journal of Morphology, v.264, n.2, p.149-160, 2005.
ACOSTA, T.J.; MIYAMOTO, A. Vascular control of ovarian function: ovulation, corpus luteum formation and regression. Animal Reproduction Science, v.82/83, p.127-140, 2004.
https://doi.org/10.1016/j.anireprosci.2004.04.022. ADHIKARI, D.; LIU, K. The regulation of maturation promoting factor during prophase I arrest and meiotic entry in mammalian oocytes. Molecular and Cellular Endocrinology, v.382, n.1, p.480-487, 2014.
AMSTERDAM, A.; SASSON, R.; KEREN-TAL, I.; AHARONI, D.; DANTES, A.; RIMON, E.; LAND, A.; COHEN, T.; DOR, Y.; HIRSH, L. Alternative pathways of ovarian apoptosis: death for life. Biochemical Pharmacology, v.66, p.1355-1362, 2003.
ARLOTTO, T.; SCHWARTZ, J.L.; FIRST, N.L.; LEIBFRIED, M.L. Aspects of follicle and oocyte stage that affect in vitro maturation and development of bovine oocytes. Theriogenology, v.45, n.5, p.943-956, 1996.
BALDISSEROTO, B. Fisiologia de peixes aplicada à psicultura. 3. ed., Santa Maria: Ed. da UFSM, 2018.
BENJAMIM, L.A. Caracterização dos ovários e do desenvolvimento ovocitário, e da recuperação ovariana pós-parto do Platy (Xiphophorus maculatus) (Teleostei, Poeciliidae) em condições laboratoriais controladas e sob ação do hormônio de crescimento, 2004. 157p. (Tese de Doutorado em Biologia Celular e Estrutural). Universidade Estadual de Campinas (UNICAMP), Campinas/SP, 2004.
BHANDARI, R.K.; KOMURO, H.; NAKAMURA, S. Molecular mechanisms underlying temperature-dependent sex determination in fish. International Journal of Molecular Sciences, v.20, n.19, p.4896, 2019.
BLANCO, M.R.; DEMYDA, S.; MORENO MILLÁN, M.; GENERO, E. Developmental competence of in vivo and in vitro matured oocytes: A review. Biotechnology and Molecular Biology Review, v.6, n.7, p.155-165, 2011.
REVINI-GANDOLFI, T.; GANDOLFI, F. The maternal legacy to the embryo: Cytoplasmic components and their effects on early development. Theriogenology, v.55, n.6, p.1255–1276, 2001.
BROMLEY, P.J.; RAVIER, C.; WITTHAMES, P.R. The influence of feeding regime on sexual maturation, fecundity and atresia in first-time spawning turbot. Journal of Fish Biology, v.56, n.2, p.264-278, 2000.
CANEDO, A.; SAIKI, P.; SANTOS, A.L.; CARNEIRO, K.S.; SOUZA, A.M.; QUALHATO, G.; BRITO, R.S.; MELO-ANDRADE, F.; ROCHA, T.L. O peixe zebra (Danio rerio) encontra bioética: os princípios éticos dos 10Rs na pesquisa. Ciência Animal Brasileira, v.23, n.1, p.1- 13, 2022.
CONNAUGHTON, M.A.; AIDA, K. Female reproductive system, fish. In: KROBIL, E.; NEILL, J.D. (ed.). Encyclopedia of Reproduction. 1. ed., San Diego, Academic Press, 1998. p.193-205.
CONNOLLY, M.H.; DUTKOSKY, R.M.; HEAH, T.P.; SAYLER, G.S.; HENRY, T.B. Temporal dynamics of oocyte growth and vitellogenin gene expression in zebrafish (Danio rerio). Zebrafish, Larchmont, v.11, n.2, p.107-114, 2014.
DRAPER, B.W.; MCCALLUM, C.M.; MOENS, C.B. Nanos1 is required to maintain oocyte production in adult zebrafish. Developmental Biology, New York, v.305, n.2, p.589-598, 2007.
FAIR, T. Follicular oocyte growth and acquisition of developmental competence. Animal Reproduction Science, v.78, n.3/4, p.203-216, 2003.
FAIR, T.; HULSHOF, S.C.; HYTTEL, P.; GREVE, T.; BOLAND, M. Nucleus ultrastructure and transcriptional activity of bovine oocytes in preantral and early antral follicles. Molecular Reproduction and Development, v.46, n.2, p.208-215, 1997.
FRANCOLINI, M.; LORA LAMIA, C.; BONSIGNORIO, C.; COTELLI, F. Oocyte development and egg envelope formation in Oreochromis niloticus, a mouth-brooding cichlid fish. Journal of Submicroscopic Cytology and Pathology, v.35, n.1, p.49-60, 2003.
FYHN, H.J.; FINN, R.N.; REITH, M.; NORBERG, B. Yolk protein hydrolysis and oocyte free amino acids as a key features in the adaptative evolution of teleost fishes to seawater. Sarsia, v.84, n.5/6, p.451-456, 1999.
GILCHRIST, R.B.; RITTER, L.J.; ARMSTRONG, D.T. Oocyte-somatic cell interactions during follicle development in mammals. Animal Reproduction Science, v.82/83, p.431-446,2004.
GONÇALVES, P.B.; FIGUEIREDO, J.R.; FREITAS, V.J.F. Biotécnicas Aplicadas à Reprodução Animal. 1. ed., São Paulo: Roca; 2008.
GRIER, H.J. Ovarian germinal epithelium and folliculogenesis in the Common Snook, Centropomus undecimalis (Teleostei: Centropomidae). Journal of Morphology, v.243, n.3, p.265-281, 2000.
GRIER, H.J.; LO NOSTRO, F. The germinal epithelium in fish gonads: the unifying concept. In: NORBERG, B.; KJESBU, O.S.; TARANGER, G.L.; ANDERSSON, E.; STEFANSSON, S.O. In: Proceedings of the 6 th International Symposium on the Reproductive Physiology of Fish. Norway: University of Bergen. p.233-236, 2000.
GUIMARÃES, A.C.D.; QUAGIO-GRASSIOTTO, I. Ultrastructural aspects of oogenesis and oocute primary growth in serrasalmus spilopleura (Teleostei, Characiformes, Serrasalminae). Tissue & Cell, v.33, n.3, p.241-248, 2001.
GURAYA, S.S. The Cell and Molecular Biology of Fish Oogenesis. 1. ed., Basel: Ed. Sauer, H.W. Karger,1986.
GURAYA, S.S. Recent advances in the functional morphology of follicular wall, eggsurface components, and micropyle in the fish ovary. In: MUNSHI, J.S.D.; DUTTA, H.M (Ed.) Fish morphology – horizon of new research, 1. ed., Rotterdam: Balkema, 1996. p.114-144.
HELFMAN, G.S.; COLLETE, B.B.; FACEY, D. Teleosts at last. In: HELFMAN, G.S; COLLETTE, B.B; FACEY, D.E; BOWEN, B.W. Bony-totongues through Anglerfishes. The diversity of fishes. 2. ed., Blackwell, Massachusetts, 2000. p.221-243. HYTTEL, P.; FAIR, T.; CALLESEN, H.; GREVEm T. Oocyte growth, capacitation and final maturation in cattle. Theriogenology, v.47, n.1, p.23-32, 1997.
HUNTRISS, J.; GOSDEN, R.; HINKINS, M.; OLIVER, B.; MILLER, D.; RUTHERFORD, A.J. Isolation, characterization and expression of the human factor in the Germline alpha (FIGLA) gene in ovarian follicles and oocytes. Molecular Human Reproduction, v.8, n.12, p.1087-1095, 2002.
KALUEFF, A.V.; WHEATON, M.; MURPHY, D.L. What’s wrong with my mouse model? Advances and strategies in animal modeling of anxiety and depression. Behavioural Brain Research, Amsterdam, v.179, n.1, p.1-18, 2007.
KHAN, I.A.; THOMAS, P. Ovarian cycle, teleost fish. In: KROBIL, E.; NEILL, J.D. (ed.). Encyclopedia of Reproduction. 1. ed., San Diego, Academic Press, vol.3, 1999. p.552-564.
KIMMEL, C.B.; BALLARD, W.W.; KIMMEL, S.R.; ULLMANN, B.; SCHILLING, T.F. Stages of Embryonic Development of the zebrafish. Developmental Dynamics, v.203, n.3, p.253-310, 1995.
KUDO, S.; YAZAWA, S. Biding of antibiotics to glycoproteins of vitelline and fertilization envelopes of cherry salmon eggs. Histochemical Journal, v.29, n.8, p.607-616, 1997.
LANGELAND, J.A.; KIMMEL, C.B. Fishes In: GILBERT, S.F.; RAUNIO, A.M. (ed. Embryology: construting the organism. 1. ed., Sunderland: Sinauer Associates, cap.19, 1997. p.383-407.
LESSMAN, C.A. Oogenesis, in nonmammalian vertebrates. In: KROBIL, E.; NEILL, J.D. (ed.). Encyclopedia of Reproduction. 1. ed., San Diego, Academic Press, 1998. p.498-508.
LESSMAN, C.A. Oocyte maturation: Converting the zebrafish oocyte to the fertilizable egg. General and Comparative Endocrinology, New York, v.161, n.1, p.53–57, 2009.
LUBZENS, E.; YOUNG, G.; BOBE, J.; CERDÀ, J. Oogenesis in teleosts: How fish eggs are formed. General and Comparative Endocrinology, New York, v.165, n.3, p.367-389, 2010.
MARKSTRÖM, E.; SVENSSON E.C.; SHAO R.; SVANBERG B.; BILLIG H. Survival factors regulating ovarian apoptosis: dependence on follicle differentiation. Reproduction, v.123, p.23-30, 2002.
MARTINS, F.S.; SILVA, J.R.V.; RODRIGUES, A.P.R.; FIGUEIREDO, J.R. Fatores
reguladores da foliculogênese em mamiferos. Revista Brasileira de Reprodução Animal. v.32, n.1, p.36-49, 2008.
MARTINS, Y.S.; MOURA, D.F.; SANTOS, G.B.; RIZZO, E.; BAZZOLI, N. Comparative folliculogenesis and spermatogenesis of four teleost fish from a Reservoir in south-eastern Brazil. Acta Zoologica, Stockholm, v.91, n.4, p.466-473, 2010.
MCGEE, E.A.; HSUE, A.J. Initial and cyclic recruitment of ovarian follicles. Endocrine Reviews, v.21, n.2, p.200-214, 2000.
MCNATTY K.P, HEATH D.A, LUNDY T, FIDLER A.E, QUIRKE L, O’CONNELL A, SMITH, P.; GROOME, N.; TISDALL, D.J. Control of early ovarian follicular development. Journal of Reproduction and Fertility, supl. 1, v.54 p.3-16, 1999.
MCNATTY, K.P.; FIDLER, A.E.; JUENGEL, J.L.; QUIRKE, L.D.; SMITH, P.R.; HEATH, D.A.; LUNDY, T.; CONNELL, A.O.; TISDALL, D.J. Growth and paracrine factors regulating follicular formation and cellular function. Molecular and Cellular Endocrinology, v.163, n.1/2, p.11-20, 2000.
MELONI, S.; MAZZINI, M. A monoclonal antibody against chorion proteins of the sea bass Dicentrarchus labrax (Linnaeus, 1758): studies of chorion precursors and applicability in immunoassays. Biology of Reproduction, v.60, n.4, p.783–789, 1999.
MIRANDA, A.C.L.; BAZZOLI, N.; RIZZO, E.; SATO, Y. Ovarian follicular atresia intwo teleost species; a histological and ultrastructural study. Tissue & Cell, v.31, n.5, p.480-488, 1999.
MIURA, T. Germ cell differentiation and maturation in teleost fish. Developmental Dynamics, v.248, n.4, p.284-305, 2019.
MONIRUZZAMAN M, MIYANO T. Growth of primordial oocytes in neonatal and adult mammals. The Journal of Reproduction Development, v.56, n.6, p.559-66, 2010.
MOORE, K.L.; PERSAUD, T.V.N. Embriologia Básica. 8.ed., Rio de Janeiro: Elsevier, 2008. MUÑOZ, M.; CASADEVALL, M.; BONET, S. Gonadal structure and gametogenesis of Aspitrigla obscura (Pisces, Triglidae). Italian Journal of Zoology, v.68, n.1, p.39-46, 2001. MURATA, K.; SUGIYAMA, H.; YASUMASU, S.; IUCHI, I.; YASUMASU, I.; YAMAGAMI, K. Cloning of cDNA and estrogen-induced hepatic gene expression for
choriogenic H, a precursor protein of the fish egg envelope (chorion). National Academy of Science of the United States of America, v.94, p.2050-2055, 1997.
NAGAHAMA, Y. The functional morphology of teleost gonads. In: HOAR, W.S.; RANDALL, D.J.; BRETT, J.R. Fish Physiology, Reproduction. 1. ed., New York: Academic Press. 1983.p.223-275.
NAKAMURA, S.; KOBAYASHI, K.; NISHIMURA, T.; TANAKA, M. Ovarian germline stem cells in the teleost fish, medaka (Oryzias latipes). International Journal of Biological Sciences, Lake Haven, v.7, n.4, p.403–409, 2011.
NISHIMURA, T.; TANAKA, M. Gonadal Development in Fish. Sexual development. Sexual Development, v.8, n.5, p.252–261, 2014.
PATIÑO, R.; SULLIVAN, C.V. Ovarian follicle growth, maturation, and ovulation in teleost fish. Fish Physiology and Biochemistry, v.26, p.57-70, 2002.
RANKIN, T.; SOYAL, S.; DEAN, J. The mouse zona pellucida: folliculogenesis, fertility and pre-implantation development. Molecular and Cellular Endocrinology, v.163, n.1/2, p.21- 25, 2000.
RIZZO, E.; BAZZOLI, N. Follicular atresia in curimatá-pioa Prochilodus affinis Reinhardt (Pisces, Characiformes). Revista Brasileira de Biologia, v.55, n.1, p.697-703, 1995.
RODRIGUEZ, K.F.; FARIN, C.E. Gene transcription and regulation of oocyte maturation. Reproduction Fertility and Development, v.16, n.1/2, p.55-67, 2004.
SAIDAPUR, S.K. Follicular atresia in the ovaries of non mammalian vertebrates. International Review of Cytology, v.54, n.1, p.225-244, 1978.
SÁNCHEZ, F.; SMITZ, J.; Molecular control of oogenesis. Biochimica et Bophysica Acta, v.1822, n.12, p.1896-1912, 2012.
SANTOS, J.E.; RIZZO, E.; BAZZOLI, N.; SATO, Y.; MORO, L. Ovarian regression and apoptosis in the South American Teleost Leporinus Taeniatus Lutken (Characiformes, Anostomidae) from the São Francisco Basin. Journal of Fish Biology, v.67, n.5, p.1446-1459, 2005.
SELMAN, K.; WALLACE, R.A. Gametogenesis in Fundulus heteroclitus American Zoologist, v.26, n.1, p.173-192, 1986.
SELMAN, K.; WALLACE, R.A. Cellular aspects of oocyte growth in teleosts. American Zoologist, v.21, n.2, p.211-231, 1989.
SILVA, J.R.V. Growth factors in goat ovaries and the role of activina-A in the development of esrly-staged follicles, 2005. 142p. (Tese de Doutorado em Reprodução Animal). Utrecht University, Faculty of Veterinary Medicine, 2005.
SILVA, L.A. Maturação e Fertilização in vitro de oócitos estádio III de zebrafish, 2015. 46p. (Dissertação de Mestrado em Zootecnia, área de concentração: Produção Animal). Faculdade de Agronomia DA Universidade Federal do Rio Grande do Sul. Programa de Pós- Graduação em Zootecnia, 2015.
SILVA, J.R.V.; VAN DEN HURK, R.; COSTA, S.H.F.; ANDRADE, E.R.; NUNES, A.P.A.; FERREIRA, F.V.A.; LÔBO, R.N.B.; FIGUEIREDO, J.R. Survival and growth of goat primordial follicles after in vitro culture of ovarian cortical slices in media containing coconut water. Animal Reproduction Science, v.81, n.3/4, p.273-286, 2004.
SOTO-SUAZO, M.; ZORN, T.M. Primordial germ cells migration: morphological and molecular aspects. Animal Reproduction, v.2, n.3, p.147-160, 2005. TOKARZ, R.R. Oogonial proliferation, oogenesis, and folliculogenesis in nonmammalian vertebrates. In: JONES, R.E. (ed.). The vertebrate ovary. 1. ed., New York, Plenum Press, 1978. p.145-179.
VAN DEN HURK, R.; ZHAO, J. Formation of mammalian oocytes and their growth, differentiation and maturation within ovarian follicles. Theriogenology, v.63, n.6, p.1717- 1751, 2005.
VAN CRUCHTEN S.; VAN DEN BROECK W. Morphological and biochemical aspects of apoptosis, oncosis and necrosis. Anatomia Histologia Embryologia. v.31, n.4, p.214-23, 2002.
WALLACE, R.A.; BEGOVAC, P.C. Phosphovitins in Fundulus oocytes and eggs. Preliminary chromatographic and eletrophoretic anlyses together with biological considerations. The Journal of Biological Chemistry, v.260, n.20, p.11268-11274, 1985.
WEST, G. Methods of assessing ovarian development in fish: a review. Australian Journal of Marine and Freshwater Research, v.41, n.2, p.199-222, 1990.
WOOD, A.W.; VAN DER KRAAK, G. Inhibition of apoptosis in vitellogenic ovarian follicles of rainbow trout (Oncorhynchus mykiss) by salmon gonadotrophin, epidermal growth factor, and 17β-estradiol. Molecular Reproduction and Development, v.61, p.511-518, 2002.
Downloads
Publicado
Como Citar
Edição
Seção
Licença

Este trabalho está licenciado sob uma licença Creative Commons Attribution 4.0 International License.
