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ZFIN ID:
ZDB-ATB-100702-1
CITATIONS
(40 total)
Antibody Name:
Ab1-ta
Nelson, A.C., Cutty, S.J., Gasiunas, S.N., Deplae, I., Stemple, D.L., Wardle, F.C. (2017) In Vivo Regulation of the Zebrafish Endoderm Progenitor Niche by T-Box Transcription Factors. Cell Reports. 19:2782-2795
Jahangiri, L., Nelson, A.C., Wardle, F.C. (2012) A cis-regulatory module upstream of deltaC regulated by Ntla and Tbx16 drives expression in the tailbud, presomitic mesoderm and somites. Developmental Biology. 371:110-120
Tallafuss, A., Gibson, D., Morcos, P., Li, Y., Seredick, S., Eisen, J., and Washbourne, P. (2012) Turning gene function ON and OFF using sense and antisense photo-morpholinos in zebrafish. Development (Cambridge, England). 139(9):1691-1699
Harrington, M.J., Chalasani, K., and Brewster, R. (2010) Cellular mechanisms of posterior neural tube morphogenesis in the zebrafish. Developmental Dynamics : an official publication of the American Association of Anatomists. 239(3):747-762
Dixon Fox, M., and Bruce, A.E. (2009) Short- and long-range functions of Goosecoid in zebrafish axis formation are independent of Chordin, Noggin 1 and Follistatin-like 1b. Development (Cambridge, England). 136(10):1675-1685
Morley, R.H., Lachani, K., Keefe, D., Gilchrist, M.J., Flicek, P., Smith, J.C., and Wardle, F.C. (2009) A gene regulatory network directed by zebrafish No tail accounts for its roles in mesoderm formation. Proceedings of the National Academy of Sciences of the United States of America. 106(10):3829-3834
Amack, J.D., Wang, X., and Yost, H.J. (2007) Two T-box genes play independent and cooperative roles to regulate morphogenesis of ciliated Kupffer's vesicle in zebrafish. Developmental Biology. 310(2):196-210
Amacher, S.L., Draper, B.W., Summers, B.R., and Kimmel, C.B. (2002) The zebrafish T-box genes no tail and spadetail are required for development of trunk and tail mesoderm and medial floor plate. Development (Cambridge, England). 129(14):3311-3323
Begemann, G., Schilling, T.F., Rauch, G.J., Geisler, R., and Ingham, P.W. (2001) The zebrafish neckless mutation reveals a requirement for raldh2 in mesodermal signals that pattern the hindbrain. Development (Cambridge, England). 128(16):3081-3094
Appel, B., Fritz, A., Westerfield, M., Grunwald, D.J., Eisen, J.S., and Riley, B.B. (1999) Delta-mediated specification of midline cell fates in zebrafish embryos. Current biology : CB. 9:247-256
Dheen, T., Sleptsova-Friedrich, I., Xu, Y., Clark, M., Lehrach, H., Gong, Z., and Korzh, V. (1999) Zebrafish tbx-c functions during formation of midline structures. Development (Cambridge, England). 126(12):2703-2713
Ober, E.A. and Schulte-Merker, S. (1999) Signals from the yolk cell induce mesoderm, neuroectoderm, the trunk organizer, and the notochord in zebrafish. Developmental Biology. 215(2):167-181
Vogel, A.M. and Gerster, T. (1999) Promoter activity of the zebrafish bhikhari retroelement requires an intact activin signaling pathway. Mechanisms of Development. 85(1-2):133-146
Warga, R.M. and Nüsslein-Volhard, C. (1999) Origin and development of the zebrafish endoderm. Development (Cambridge, England). 126:827-838
Bauer, H., Meier, A., Hild, M., Stachel, S., Economides, A., Hazelett, D., Harland, R.M., and Hammerschmidt, M. (1998) Follistatin and Noggin are excluded from the zebrafish organizer. Developmental Biology. 204:488-507
Koshida, S., Shinya, M., Mizuno, T., Kuroiwa, A., and Takeda, H. (1998) Initial anteroposterior pattern of the zebrafish central nervous system is determined by differential competence of the epiblast. Development (Cambridge, England). 125:1957-1966
Lauderdale, J.D., Pasquali, S.K., Fazel, R., van Eeden, F.J., Schauerte, H.E., Haffter, P., and Kuwada, J.Y. (1998) Regulation of netrin-1a expression by hedgehog proteins. Molecular and cellular neurosciences. 11:194-205
Makita, R., Mizuno, T., Koshida, S., Kuroiwa, A., and Takeda, H. (1998) Zebrafish wnt11: pattern and regulation of the expression by the yolk cell and no tail activity. Mechanisms of Development. 71:165-176
Warga, R.M. and Nüsslein-Volhard, C. (1998) Spadetail-dependent cell compaction of the dorsal zebrafish blastula. Developmental Biology. 203:116-121
Woo, K. and Fraser, S.E. (1998) Specification of the hindbrain fate in the zebrafish. Developmental Biology. 197:283-296
Heisenberg, C.P. and Nüsslein-Volhard, C. (1997) The function of silberblick in the positioning of the eye anlage in the zebrafish embryo. Developmental Biology. 184(1):85-94
Hug, B., Walter, V., and Grunwald, D.J. (1997) tbx6, a brachyury-related gene expressed by ventral mesendodermal precursors in the zebrafish embryo. Developmental Biology. 183(1):61-73
Heisenberg, C.P., Brand, M., Jiang, Y.J., Warga, R.M., Beuchle, D., van Eeden, F.J., Furutani-Seiki, M., Granato, M., Haffter, P., Hammerschmidt, M., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., and Nüsslein-Volhard, C. (1996) Genes involved in forebrain development in the zebrafish, Danio rerio. Development (Cambridge, England). 123:191-203
Odenthal, J., Haffter, P., Vogelsang, E., Brand, M., van Eeden, F.J., Furutani-Seiki, M., Granato, M., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Warga, R.M., Allende, M.L., Weinberg, E.S., and Nüsslein-Volhard, C. (1996) Mutations affecting the formation of the notochord in the zebrafish, Danio rerio. Development (Cambridge, England). 123:103-115
Renucci, A., Lemarchandel, V., and Rosa, F. (1996) An activated form of type I serine/threonine kinase receptor TARAM-A reveals a specific signalling pathway involved in fish head organiser formation. Development (Cambridge, England). 122:3735-3743
Strähle, U., Blader, P., and Ingham, P.W. (1996) Expression of axial and sonic hedgehog in wildtype and midline defective zebrafish embryos. The International journal of developmental biology. 40(5):929-940
van Eeden, F.J., Granato, M., Schach, U., Brand, M., Furutani-Seiki-, M., Haffter, P., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., Warga, R.M., Allende, M.L., Weinberg, E.S., and Nüsslein-Volhard, C. (1996) Mutations affecting somite formation and patterning in the zebrafish, Danio rerio. Development (Cambridge, England). 123:153-164
Griffin, K., Patient, R., and Holder, N. (1995) Analysis of FGF function in normal and no tail zebrafish embryos reveals separate mechanisms for formation of the trunk and the tail. Development (Cambridge, England). 121:2983-2994
Mercier, P., Simeone, A., Cotelli, F., and Boncinelli, E. (1995) Expression pattern of two otx genes suggests a role in specifying anterior body structures in zebrafish. The International journal of developmental biology. 39:559-573
Toyama, R., O'Connell, M.L., Wright, C.V.E., Kuehn, M.R., and Dawid, I.B. (1995) Nodal induces ectopic goosecoid and lim1 expression and axis duplication in zebrafish. Development (Cambridge, England). 121:383-391
Yan, Y.L., Hatta, K., Riggleman, B., and Postlethwait, J.H. (1995) Expression of a type II collagen gene in the zebrafish embryonic axis. Developmental Dynamics : an official publication of the American Association of Anatomists. 203:363-376
Barro, O., Joly, C., Condamine, H., and Boulekbache, H. (1994) Widespread expression of the Xenopus homeobox gene Xhox3 in zebrafish eggs causes a disruption of the anterior-posterior axis. The International journal of developmental biology. 38:613-622
Schulte-Merker, S., Hammerschmidt, M., Beuchle, D., Cho, K.W., De Robertis, E.M., and Nüsslein-Volhard, C. (1994) Expression of zebrafish goosecoid and no tail gene products in wild-type and mutant no tail embryos. Development (Cambridge, England). 120:843-852
Schulte-Merker, S., van Eeden, F.J.M., Halpern, M.E., Kimmel, C.B., and Nüsslein-Volhard, C. (1994) no tail (ntl) is the zebrafish homologue of the mouse T (Brachyury) gene. Development (Cambridge, England). 120:1009-1015
Wittbrodt, J. and Rosa, F.M. (1994) Disruption of mesoderm and axis formation in fish by ectopic expression of activin variants: the role of maternal activin. Genes & Development. 8:1448-1462
Xu, Q., Holder, N., Patient, R., and Wilson, S.W. (1994) Spatially regulated expression of three receptor tyrosine kinase genes during gastrulation in the zebrafish. Development (Cambridge, England). 120:287-299
Halpern, M.E., Ho, R.K., Walker, C., and Kimmel, C.B. (1993) Induction of muscle pioneers and floor plate is distinguished by the zebrafish no tail mutation. Cell. 75:99-111
Strähle, U., and Jesuthasan, S. (1993) Ultraviolet irradiation impairs epiboly in zebrafish embryos: evidence for a microtubule-dependent mechanism of epiboly. Development (Cambridge, England). 119:909-919
Schulte-Merker, S., Ho, R.K., Herrmann, B.G., and Nüsslein-Volhard, C. (1992) The protein product of the zebrafish homologue of the mouse T gene is expressed in nuclei of the germ ring and the notochord of the early embryo. Development (Cambridge, England). 116:1021-1032
Additional Citations (1):
ZFIN Staff (2002) Scientific Curation. Manually curated data.
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