[1] |
Baudiffier, D., Hinfray, N., Vosges, M., Creusot, N., Chadili, E., Porcher, J.M., Schulz, R.W., Brion, F., 2012. A critical role of follicle-stimulating hormone (Fsh) in mediating the effect of clotrimazole on testicular steroidogenesis in adult zebrafish. Toxicology 298, 30-39.
|
[2] |
Beer, R.L., Draper, B.W., 2013. nanos3 maintains germline stem cells and expression of the conserved germline stem cell gene nanos2 in the zebrafish ovary. Dev. Biol. 374, 308-318.
|
[3] |
Bennett, C.L., Christie, J., Ramsdell, F., Brunkow, M.E., Ferguson, P.J., Whitesell, L., Kelly, T.E., Saulsbury, F.T., Chance, P.F., Ochs, H.D., 2001. The immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome (IPEX) is caused by mutations of FOXP3. Nat. Genet. 27, 20-21.
|
[4] |
Brunkow, M.E., Jeffery, E.W., Hjerrild, K.A., Paeper, B., Clark, L.B., Yasayko, S.A., Wilkinson, J.E., Galas, D., Ziegler, S.F., Ramsdell, F., 2001. Disruption of a new forkhead/winged-helix protein, scurfin, results in the fatal lymphoproliferative disorder of the scurfy mouse. Nat. Genet. 27, 68-73.
|
[5] |
Burgos-Aceves, M.A., Cohen, A., Smith, Y., Faggio, C., 2016. Estrogen regulation of gene expression in the teleost fish immune system. Fish Shellfish Immunol.. 58, 42-49.
|
[6] |
Capel, B., 2017. Vertebrate sex determination: evolutionary plasticity of a fundamental switch. Nat. Rev. Genet. 18, 675-689.
|
[7] |
Chang, N., Sun, C., Gao, L., Zhu, D., Xu, X., Zhu, X., Xiong, J.W., Xi, J.J., 2013. Genome editing with RNA-guided Cas9 nuclease in zebrafish embryos. Cell Res.. 23, 465-472.
|
[8] |
Chomczynski, P., Mackey, K., 1995. Short technical reports. Modification of the TRI reagent procedure for isolation of RNA from polysaccharide- and proteoglycan-rich sources. Biotechniques 19, 942-945.
|
[9] |
Dranow, D.B., Hu, K., Bird, A.M., Lawry, S.T., Adams, M.T., Sanchez, A., Amatruda, J.F., Draper, B.W., 2016. Bmp15 is an oocyte-produced signal required for maintenance of the adult female sexual phenotype in zebrafish. PLoS Genet.. 12, e1006323.
|
[10] |
Draper, B.W., 2017. Identification of germ-line stem cells in zebrafish. Methods Mol. Biol. 1463, 103-113.
|
[11] |
Esche, C., Stellato, C., Beck, L.A., 2005. Chemokines: key players in innate and adaptive immunity. J. Invest. Dermatol. 125, 615-628.
|
[12] |
Fontenot, J.D., Gavin, M.A., Rudensky, A.Y., 2003. Foxp3 programs the development and function of CD4+CD25+ regulatory T cells. Nat. Immunol. 4, 330-336.
|
[13] |
Glasauer, S.M., Neuhauss, S.C., 2014. Whole-genome duplication in teleost fishes and its evolutionary consequences. Mol. Genet. Genom. 289, 1045-1060.
|
[14] |
Gordon, S., Pluddemann, A., 2018. Macrophage clearance of apoptotic cells: a critical assessment. Front. Immunol. 9, 127.
|
[15] |
Guerriero, J.L., 2019. Chapter three - macrophages: their untold story in T cell activation and function, in: Galluzzi, L., Rudqvist, N.-P. (Eds.), International Review of Cell and Molecular Biology. Academic Press, pp. 73-93.
|
[16] |
Hinfray, N., Baudiffier, D., Leal, M.C., Porcher, J.M., Ait-Aissa, S., Le Gac, F., Schulz, R.W., Brion, F., 2011. Characterization of testicular expression of P450 17alpha-hydroxylase, 17,20-lyase in zebrafish and its perturbation by the pharmaceutical fungicide clotrimazole. Gen. Comp. Endocrinol. 174, 309-317.
|
[17] |
Hori, S., Nomura, T., Sakaguchi, S., 2003. Control of regulatory T cell development by the transcription factor Foxp3. Science 299, 1057-1061.
|
[18] |
Huang, Q., Liu, X., Zhang, Y., Huang, J., Li, D., Li, B., 2020. Molecular feature and therapeutic perspectives of immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome. J. Genet. Genomics 47, 17-26.
|
[19] |
Hubert, F.X., Kinkel, S.A., Crewther, P.E., Cannon, P.Z, Webster, K.E., Link, M., Uibo, R., O’Bryan, M.K., Meager, A., Forehan, S.P., Smyth, G.K., Mittaz, L., Antonarakis, S.E., Peterson, P., Heath, W.R., Scott, H.S., 2009. Aire-deficient C57BL/6 mice mimicking the common human 13-base pair deletion mutation present with only a mild autoimmune phenotype. Journal of immunology 182, 3902–3918.
|
[20] |
Hui, S.P., Sheng, D.Z., Sugimoto, K., Gonzalez-Rajal, A., Nakagawa, S., Hesselson, D., Kikuchi, K., 2017. Zebrafish regulatory T cells mediate organ-specific regenerative programs. Dev. Cell 43, 659-672 e655.
|
[21] |
Jacobo, P., 2018. The role of regulatory T Cells in autoimmune orchitis. Andrologia 50 (e13092).
|
[22] |
Jacobo, P., Guazzone, V.A., Theas, M.S., Lustig, L., 2011. Testicular autoimmunity. Autoimmunity reviews 10, 201–204.
|
[23] |
Jasurda, J.S., Jung, D.O., Froeter, E.D., Schwartz, D.B., Hopkins, T.D., Farris, C.L., McGee, S., Narayan, P., Ellsworth, B.S., 2014. The forkhead transcription factor, FOXP3: a critical role in male fertility in mice. Biol. Reprod. 90, 4.
|
[24] |
Kasheta, M., Painter, C.A., Moore, F.E., Lobbardi, R., Bryll, A., Freiman, E., Stachura, D., Rogers, A.B., Houvras, Y., Langenau, D.M., Ceol, C.J., 2017. Identification and characterization of T reg-like cells in zebrafish. J. Exp. Med. 214, 3519-3530.
|
[25] |
Langenau, D.M., Ferrando, A.A., Traver, D., Kutok, J.L., Hezel, J.P., Kanki, J.P., Zon, L.I., Look, A.T., Trede, N.S., 2004. In vivo tracking of T cell development, ablation, and engraftment in transgenic zebrafish. Proc. Natl. Acad. Sci. U. S. A. 101, 7369-7374.
|
[26] |
Lauter, G., Soll, I., Hauptmann, G., 2011. Multicolor fluorescent in situ hybridization to define abutting and overlapping gene expression in the embryonic zebrafish brain. Neural Dev. 6, 10.
|
[27] |
Lawrence, T., Gilroy, D.W., 2007. Chronic inflammation: a failure of resolution? Int. J. Exp. Pathol. 88, 85-94.
|
[28] |
Liew, W.C., Orban, L., 2014. Zebrafish sex: a complicated affair. Brief Funct Genomics 13, 172-187.
|
[29] |
Lin, Q., Mei, J., Li, Z., Zhang, X., Zhou, L., Gui, J.F, 2017. Distinct and Cooperative Roles of amh and dmrt1 in Self-Renewal and Differentiation of Male Germ Cells in Zebrafish. Genetics 207, 1007–1022.
|
[30] |
Livak, K.J., Schmittgen, T.D., 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) method. Methods 25, 402-408.
|
[31] |
Matta, S., Vilela, D., Godinho, H., Franca, L., 2002. The goitrogen 6-n-propyl-2-thiouracil (PTU) given during testis development increases Sertoli and germ cell numbers per cyst in fish: the tilapia (Oreochromis niloticus) model. Endocrinology 143, 970-978.
|
[32] |
Mitra, S., Alnabulsi, A., Secombes, C.J., Bird, S., 2010. Identification and characterization of the transcription factors involved in T-cell development, t-bet, stat6 and foxp3, within the zebrafish, Danio rerio. FEBS J.. 277, 128-147.
|
[33] |
Nathan, C., 2002. Points of control in inflammation. Nature 420, 846-852.
|
[34] |
Orban, L., Sreenivasan, R., Olsson, P.E., 2009. Long and winding roads: testis differentiation in zebrafish. Mol. Cell. Endocrinol. 312, 35-41.
|
[35] |
Pelletier, R.M., Yoon, S.R., Akpovi, C.D., Silvas, E., Vitale, M.L., 2009. Defects in the regulatory clearance mechanisms favor the breakdown of self-tolerance during spontaneous autoimmune orchitis. American journal of physiology. Regulatory, integrative and comparative physiology 296, R743-762.
|
[36] |
Piferrer, F., Anastasiadi, D., Valdivieso, A., Sanchez-Baizan, N., Moraleda-Prados, J., Ribas, L., 2019. The model of the conserved epigenetic regulation of sex. Front. Genet. 10, 857.
|
[37] |
Quintana, F.J., Iglesias, A.H., Farez, M.F., Caccamo, M., Burns, E.J., Kassam, N., Oukka, M., Weiner, H.L., 2010. Adaptive autoimmunity and Foxp3-based immunoregulation in zebrafish. PloS One 5, e9478.
|
[38] |
Rodriguez-Mari, A., Canestro, C., BreMiller, R.A., Nguyen-Johnson, A., Asakawa, K., Kawakami, K., Postlethwait, J.H., 2010. Sex reversal in zebrafish fancl mutants is caused by Tp53-mediated germ cell apoptosis. PLoS Genet.. 6, e1001034.
|
[39] |
Rodriguez-Mari, A., Yan, Y.L., Bremiller, R.A., Wilson, C., Canestro, C., Postlethwait, J.H., 2005. Characterization and expression pattern of zebrafish anti-Mullerian hormone (Amh) relative to sox9a, sox9b, and cyp19a1a, during gonad development. Gene Expr. Patterns 5, 655-667.
|
[40] |
Sawant, D.V., Vignali, D.A., 2014. Once a Treg, always a Treg? Immunol. Rev. 259, 173-191.
|
[41] |
Schulz, R.W., de Franca, L.R., Lareyre, J.J., Le Gac, F., Chiarini-Garcia, H., Nobrega, R.H., Miura, T., 2010. Spermatogenesis in fish. Gen. Comp. Endocrinol. 165, 390-411.
|
[42] |
Selman, K., Wallace, R.A., Sarka, A., Qi, X., 1993. Stages of oocyte development in the zebrafish, Brachydanio rerio. J. Morphol. 218, 203-224.
|
[43] |
Shelley, L.K., Osachoff, H.L., van Aggelen, G.C., Ross, P.S., Kennedy, C.J., 2013. Alteration of immune function endpoints and differential expression of estrogen receptor isoforms in leukocytes from 17β-estradiol exposed rainbow trout (Oncorhynchus mykiss). Gen. Comp. Endocrinol. 180, 24-32.
|
[44] |
Suescun, M.O., Rival, C., Theas, M.S., Calandra, R.S., Lustig, L., 2003. Involvement of tumor necrosis factor-alpha in the pathogenesis of autoimmune orchitis in rats. Biol. Reprod. 68, 2114-2121.
|
[45] |
Sugimoto, K., Hui, S.P., Sheng, D.Z., Nakayama, M., Kikuchi, K., 2017. Zebrafish FOXP3 is required for the maintenance of immune tolerance. Dev. Comp. Immunol. 73, 156-162.
|
[46] |
Tao, S., Wang, L., Zhu, Z., Liu, Y., Wu, L., Yuan, C., Zhang, G., Wang, Z., 2019. Adverse effects of bisphenol A on Sertoli cell blood-testis barrier in rare minnow Gobiocypris rarus. Ecotoxicol. Environ. Saf. 171, 475-483.
|
[47] |
Theas, M.S., Rival, C., Jarazo-Dietrich, S., Jacobo, P., Guazzone, V.A., Lustig, L., 2008. Tumour necrosis factor-alpha released by testicular macrophages induces apoptosis of germ cells in autoimmune orchitis. Hum. Reprod. 23, 1865-1872.
|
[48] |
Todd, E., Ortega-Recalde, O., Liu, H., Lamm, M., Rutherford, K., Cross, H., Black, M., Kardailsky, O., Graves, J., Hore, T., Godwin, J., Gemmell, N., 2019. Stress, novel sex genes, and epigenetic reprogramming orchestrate socially controlled sex change. Sci. Adv. 5, eaaw7006.
|
[49] |
Traut, W., Winking, H., 2001. Meiotic chromosomes and stages of sex chromosome evolution in fish: zebrafish, platyfish and guppy. Chromosome Res. 9, 659-672.
|
[50] |
Tung, K.S., Harakal, J., Qiao, H., Rival, C., Li, J.C., Paul, A.G., Wheeler, K., Pramoonjago, P., Grafer, C.M., Sun, W., Sampson, R.D., Wong, E.W., Reddi, P.P., Deshmukh, U.S., Hardy, D.M., Tang, H., Cheng, C.Y., Goldberg, E., 2017. Egress of sperm autoantigen from seminiferous tubules maintains systemic tolerance. J. Clin. Invest. 127, 1046-1060.
|
[51] |
Uchida, D., Yamashita, M., Kitano, T., Iguchi, T., 2002. Oocyte apoptosis during the transition from ovary-like tissue to testes during sex differentiation of juvenile zebrafish. J. Exp. Biol. 205, 711-718.
|
[52] |
Wang, X.G., Bartfai, R., Sleptsova-Freidrich, I., Orban, L., 2007. The timing and extent of 'juvenile ovary' phase are highly variable during zebrafish testis differentiation. J. Fish Biol. 70, 33-44.
|
[53] |
Wen, Y., Fang, W., Xiang, L.X., Pan, R.L., Shao, J.Z., 2011. Identification of Treg-like cells in Tetraodon: insight into the origin of regulatory T subsets during early vertebrate evolution. Cell. Mol. Life Sci. 68, 2615-2626.
|
[54] |
Wildin, R.S., Freitas, A., 2005. IPEX and FOXP3: clinical and research perspectives. J. Autoimmun. 25 Suppl., 56-62.
|
[55] |
Wilson, C.A., High, S.K., McCluskey, B.M., Amores, A., Yan, Y.L., Titus, T.A., Anderson, J.L., Batzel, P., Carvan, M.J., Schartl, M., Postlethwait, J.H., 2014. Wild sex in zebrafish: loss of the natural sex determinant in domesticated strains. Genetics 198, 1291–1308.
|
[56] |
Xia, H., Zhong, C., Wu, X., Chen, J., Tao, B., Xia, X., Shi, M., Zhu, Z., Trudeau, V.L., Hu, W., 2018. Mettl3 mutation disrupts gamete maturation and reduces fertility in zebrafish. Genetics 208, 729-743.
|
[57] |
Yan, Y.L., Desvignes, T., Bremiller, R., Wilson, C., Dillon, D., High, S., Draper, B., Buck, C.L., Postlethwait, J., 2017. Gonadal soma controls ovarian follicle proliferation through Gsdf in zebrafish. Dev. Dynam. 246, 925-945.
|
[58] |
Ye, D., Wang, X., Wei, C., He, M., Wang, H., Wang, Y., Zhu, Z., Sun, Y., 2019a. Marcksb plays a key role in the secretory pathway of zebrafish Bmp2b. PLoS Genet.. 15, e1008306.
|
[59] |
Ye, D., Zhu, L., Zhang, Q., Xiong, F., Wang, H., Wang, X., He, M., Zhu, Z., Sun, Y., 2019b. Abundance of early embryonic primordial germ cells promotes zebrafish female differentiation as revealed by lifetime labeling of germline. Mar. Biotechnol. 21, 217-228.
|
[60] |
Zhang, Q., Ye, D., Wang, H., Wang, Y., Hu, W., Sun, Y., 2020. Zebrafish cyp11c1 knockout reveals the roles of 11-ketotestosterone and cortisol in sexual development and reproduction. Endocrinology 161, bqaa048.
|