|
Wang, C., Wang, X., Zheng, H., Yao, J., Xiang, Y., Liu, D. (2023) The ndrg2 Gene Regulates Hair Cell Morphogenesis and Auditory Function during Zebrafish Development. International Journal of Molecular Sciences. 24(12):
|
Lu, Y., Tang, D., Zheng, Z., Wang, X., Zuo, N., Yan, R., Wu, C., Ma, J., Wang, C., Xu, H., He, Y., Liu, D., Liu, S. (2022) Cingulin b Is Required for Zebrafish Lateral Line Development Through Regulation of Mitogen-Activated Protein Kinase and Cellular Senescence Signaling Pathways. Frontiers in molecular neuroscience. 15:844668
|
Tang, D., Zheng, S., Zheng, Z., Liu, C., Zhang, J., Yan, R., Wu, C., Zuo, N., Wu, L., Xu, H., Liu, S., He, Y. (2022) Dnmt1 is required for the development of auditory organs via cell cycle arrest and Fgf signalling. Cell Proliferation. 55(5):e13225
|
Wei, G., Zhang, X., Cai, C., Sheng, J., Xu, M., Wang, C., Gu, Q., Guo, C., Chen, F., Liu, D., Qian, F. (2022) Dual-Specificity Phosphatase 14 Regulates Zebrafish Hair Cell Formation Through Activation of p38 Signaling Pathway. Frontiers in Cellular Neuroscience. 16:840143
|
Gong, J., Qian, P., Hu, Y., Guo, C., Wei, G., Wang, C., Cai, C., Wang, H., Liu, D. (2021) Claudin h Is Essential for Hair Cell Morphogenesis and Auditory Function in Zebrafish. Frontiers in cell and developmental biology. 9:663995
|
Hu, S.Q., Xu, H.M., Qian, F., Chen, C.S., Wang, X., Liu, D., Cheng, L. (2021) Interferon regulatory factor-7 is required for hair cell development during zebrafish embryogenesis. Developmental Neurobiology. 82(1):88-97
|
Karuppan, S.J., Vogt, A., Fischer, Z., Ladutska, A., Swiastyn, J., McGraw, H.F., Bouyain, S. (2021) Members of the vertebrate contactin and amyloid precursor protein families interact through a conserved interface. The Journal of biological chemistry. 298(2):101541
|
Matrone, G., Xia, B., Chen, K., Denvir, M.A., Baker, A.H., Cooke, J.P. (2021) Fli1+ cells transcriptional analysis reveals an Lmo2-Prdm16 axis in angiogenesis. Proceedings of the National Academy of Sciences of the United States of America. 118(31):
|
Kozak, E.L., Palit, S., Miranda-Rodríguez, J.R., Janjic, A., Böttcher, A., Lickert, H., Enard, W., Theis, F.J., López-Schier, H. (2020) Epithelial Planar Bipolarity Emerges from Notch-Mediated Asymmetric Inhibition of Emx2. Current biology : CB. 30(6):1142-1151.e6
|
|
Rissone, A., Jimenez, E., Bishop, K., Carrington, B., Slevin, C., Wincovitch, S.M., Sood, R., Candotti, F., Burgess, S.M. (2019) A model for reticular dysgenesis shows impaired sensory organ development and hair cell regeneration linked to cellular stress. Disease models & mechanisms. 12(12):
|
Young, R.M., Hawkins, T.A., Cavodeassi, F., Stickney, H.L., Schwarz, Q., Lawrence, L.M., Wierzbicki, C., Cheng, B.Y., Luo, J., Ambrosio, E.M., Klosner, A., Sealy, I.M., Rowell, J., Trivedi, C.A., Bianco, I.H., Allende, M.L., Busch-Nentwich, E.M., Gestri, G., Wilson, S.W. (2019) Compensatory growth renders Tcf7l1a dispensable for eye formation despite its requirement in eye field specification. eLIFE. 8:
|
Sharma, P., MacLean, A.L., Meinecke, L., Clouthier, D., Nie, Q., Schilling, T.F. (2018) Transcriptomics reveals complex kinetics of dorsal-ventral patterning gene expression in the mandibular arch. Genesis (New York, N.Y. : 2000). 57(1):e23275
|
Wang, Y., Han, Y., Xu, P., Ding, S., Li, G., Jin, H., Meng, Y., Meng, A., Jia, S. (2018) prpf4 is essential for cell survival and posterior lateral line primordium migration in zebrafish. Journal of genetics and genomics = Yi chuan xue bao. 45(8):443-453
|
Algama, M., Tasker, E., Williams, C., Parslow, A.C., Bryson-Richardson, R.J., Keith, J.M. (2017) Genome-wide identification of conserved intronic non-coding sequences using a Bayesian segmentation approach. BMC Genomics. 18:259
|
|
|
He, Y., Wang, Z., Sun, S., Tang, D., Li, W., Chai, R., Li, H. (2016) HDAC3 Is Required for Posterior Lateral Line Development in Zebrafish. Molecular neurobiology. 53(8):5103-17
|
Nakahara, Y., Muto, A., Hirabayashi, R., Sakuma, T., Yamamoto, T., Kume, S., Kikuchi, Y. (2016) Temporal effects of Notch signaling and potential cooperation with multiple downstream effectors on adenohypophysis cell specification in zebrafish. Genes to cells : devoted to molecular & cellular mechanisms. 21(5):492-504
|
Graf, M., Teo Qi-Wen, E.R., Viktor Sarusie, M., Rajaei, F., Winkler, C. (2015) Dmrt5 controls corticotrope and gonadotrope differentiation in the zebrafish pituitary. Molecular endocrinology (Baltimore, Md.). 29(2):187-99
|
Xing, C., Gong, B., Xue, Y., Han, Y., Wang, Y., Meng, A., Jia, S. (2015) TGFβ1a regulates zebrafish posterior lateral line formation via Smad5 mediated pathway. Journal of molecular cell biology. 7(1):48-61
|
Han, H.W., Chou, C.M., Chu, C.Y., Cheng, C.H., Yang, C.H., Hung, C.C., Hwang, P.P., Lee, S.J., Liao, Y.F., and Huang, C.J. (2014) The Nogo-C2/Nogo receptor complex regulates the morphogenesis of zebrafish lateral line primordium through modulating the expression of dkk1b, a Wnt signal inhibitor. PLoS One. 9(1):e86345
|
Tang, C.H., Lai, Y.R., Chen, Y.C., Li, C.H., Lu, Y.F., Chen, H.Y., Lien, H.W., Yang, C.H., Huang, C.J., Wang, C.Y., Kao, C.F., Hwang, S.P. (2014) Expression of zebrafish anterior gradient 2 in the semicircular canals and supporting cells of otic vesicle sensory patches is regulated by Sox10. Biochimica et biophysica acta. Gene regulatory mechanisms. 1839(6):425-37
|
Xu, H., Ye, D., Behra, M., Burgess, S., Chen, S., and Lin, F. (2014) Gbeta1 controls collective cell migration by regulating the protrusive activity of leader cells in the posterior lateral line primordium. Developmental Biology. 385(2):316-27
|
|
Geng, F.S., Abbas, L., Baxendale, S., Holdsworth, C.J., Swanson, A.G., Slanchev, K., Hammerschmidt, M., Topczewski, J., and Whitfield, T.T. (2013) Semicircular canal morphogenesis in the zebrafish inner ear requires the function of gpr126 (lauscher), an adhesion class G protein-coupled receptor gene. Development (Cambridge, England). 40(21):4362-4374
|
|
|
Miyasaka, N., Wanner, A.A., Li, J., Mack-Bucher, J., Genoud, C., Yoshihara, Y., and Friedrich, R.W. (2013) Functional development of the olfactory system in zebrafish. Mechanisms of Development. 130(6-8):336-46
|
|
Schuler, S., Hauptmann, J., Perner, B., Kessels, M.M., Englert, C., and Qualmann, B. (2013) Ciliated sensory hair cell formation and function require the F-BAR protein syndapin I and the WH2 domain-based actin nucleator Cobl. Journal of Cell Science. 126(1):196-208
|
Varshney, G.K., Lu, J., Gildea, D., Huang, H., Pei, W., Yang, Z., Huang, S.C., Schoenfeld, D.S., Pho, N., Casero, D., Hirase, T., Mosbrook-Davis, D.M., Zhang, S., Jao, L.E., Zhang, B., Woods, I.G., Zimmerman, S., Schier, A.F., Wolfsberg, T., Pellegrini, M., Burgess, S.M., and Lin, S. (2013) A large-scale zebrafish gene knockout resource for the genome-wide study of gene function. Genome research. 23(4):727-735
|
|
|
|
|
McGraw, H.F., Drerup, C.M., Culbertson, M.D., Linbo, T., Raible, D.W., and Nechiporuk, A.V. (2011) Lef1 is required for progenitor cell identity in the zebrafish lateral line primordium. Development (Cambridge, England). 138(18):3921-3930
|
|
|
|
|
|
Landgraf, K., Bollig, F., Trowe, M.O., Besenbeck, B., Ebert, C., Kruspe, D., Kispert, A., Hänel, F., and Englert, C. (2010) Sipl1 and Rbck1 are novel Eya1-binding proteins with a role in craniofacial development. Molecular and cellular biology. 30(24):5764-5775
|
Sarrazin, A.F., Nuñez, V.A., Sapède, D., Tassin, V., Dambly-Chaudière, C., and Ghysen, A. (2010) Origin and early development of the posterior lateral line system of zebrafish. The Journal of neuroscience : the official journal of the Society for Neuroscience. 30(24):8234-8244
|
|
Wada, H., Ghysen, A., Satou, C., Higashijima, S.I., Kawakami, K., Hamaguchi, S., and Sakaizumi, M. (2010) Dermal morphogenesis controls lateral line patterning during postembryonic development of teleost fish. Developmental Biology. 340(2):583-594
|
|
Dutton, K., Abbas, L., Spencer, J., Brannon, C., Mowbray, C., Nikaido, M., Kelsh, R.N., and Whitfield, T.T. (2009) A zebrafish model for Waardenburg syndrome type IV reveals diverse roles for Sox10 in the otic vesicle. Disease models & mechanisms. 2(1-2):68-83
|
|
|
Hava, D., Forster, U., Matsuda, M., Cui, S., Link, B.A., Eichhorst, J., Wiesner, B., Chitnis, A., and Abdelilah-Seyfried, S. (2009) Apical membrane maturation and cellular rosette formation during morphogenesis of the zebrafish lateral line. Journal of Cell Science. 122(Pt 5):687-695
|
|
Lin, C.Y., Chen, W.T., Lee, H.C., Yang, P.H., Yang, H.J., and Tsai, H.J. (2009) The transcription factor six1a plays an essential role in the craniofacial myogenesis of zebrafish. Developmental Biology. 331(2):152-166
|
|
|
|
Rotllant, J., Liu, D., Yan, Y.L., Postlethwait, J.H., Westerfield, M., and Du, S.J. (2008) Sparc (Osteonectin) functions in morphogenesis of the pharyngeal skeleton and inner ear. Matrix biology : journal of the International Society for Matrix Biology. 27(6):561-572
|
|
Wang, L., Sewell, W.F., Kim, S.D., Shin, J.T., Macrae, C.A., Zon, L.I., Seidman, J.G., and Seidman, C.E. (2008) Eya4 regulation of Na+/K+-ATPase is required for sensory system development in zebrafish. Development (Cambridge, England). 135(20):3425-3434
|
Dickmeis, T., Lahiri, K., Nica, G., Vallone, D., Santoriello, C., Neumann, C.J., Hammerschmidt, M., and Foulkes, N.S. (2007) Glucocorticoids Play a Key Role in Circadian Cell Cycle Rhythms. PLoS Biology. 5(4):e78
|
|
Lecaudey, V., Ulloa, E., Anselme, I., Stedman, A., Schneider-Maunoury, S., and Pujades C. (2007) Role of the hindbrain in patterning the otic vesicle: A study of the zebrafish vhnf1 mutant. Developmental Biology. 303(1):134-143
|
|
|
Omata, Y., Nojima, Y., Nakayama, S., Okamoto, H., Nakamura, H., and Funahashi, J.I. (2007) Role of Bone morphogenetic protein 4 in zebrafish semicircular canal development. Development, growth & differentiation. 49(9):711-719
|
|
To, T.T., Hahner, S., Nica, G., Rohr, K.B., Hammerschmidt, M., Winkler, C., and Allolio, B. (2007) Pituitary-interrenal interaction in zebrafish interrenal organ development. Molecular endocrinology (Baltimore, Md.). 21(2):472-485
|
Wang, D., Jao, L.E., Zheng, N., Dolan, K., Ivey, J., Zonies, S., Wu, X., Wu, K., Yang, H., Meng, Q., Zhu, Z., Zhang, B., Lin, S., and Burgess, S.M. (2007) Efficient genome-wide mutagenesis of zebrafish genes by retroviral insertions. Proceedings of the National Academy of Sciences of the United States of America. 104(30):12428-12433
|
|
Dufourcq, P., Roussigne, M., Blader, P., Rosa, F., Peyriéras, N., and Vriz, S. (2006) Mechano-sensory organ regeneration in adults: The zebrafish lateral line as a model. Molecular and cellular neurosciences. 33(2):180-187
|
Lopez, M., Nica, G., Motte, P., Martial, J.A., Hammerschmidt, M., and Muller, M. (2006) Expression of the somatolactin beta gene during zebrafish embryonic development. Gene expression patterns : GEP. 6(2):156-161
|
Nica, G., Herzog, W., Sonntag, C., Nowak, M., Schwarz, H., Zapata, A.G., Hammerschmidt, M. (2006) Eya1 is required for lineage-specific differentiation, but not for cell survival in the zebrafish adenohypophysis. Developmental Biology. 292(1):189-204
|
Phillips, B.T., Kwon, H.J., Melton, C., Houghtaling, P., Fritz, A., and Riley, B.B. (2006) Zebrafish msxB, msxC and msxE function together to refine the neural-nonneural border and regulate cranial placodes and neural crest development. Developmental Biology. 294(2):376-390
|
Sarrazin, A.F., Villablanca, E.J., Nunez, V.A., Sandoval, P.C., Ghysen, A., and Allende, M.L. (2006) Proneural gene requirement for hair cell differentiation in the zebrafish lateral line. Developmental Biology. 295(2):534-545
|
Dutta, S., Dietrich, J.E., Aspock, G., Burdine, R.D., Schier, A., Westerfield, M., and Varga, Z.M. (2005) pitx3 defines an equivalence domain for lens and anterior pituitary placode. Development (Cambridge, England). 132(7):1579-1590
|
|
Kozlowski, D.J., Whitfield, T.T., Hukriede, N.A., Lam, W.K., and Weinberg, E.S. (2005) The zebrafish dog-eared mutation disrupts eya1, a gene required for cell survival and differentiation in the inner ear and lateral line. Developmental Biology. 277(1):27-41
|
|
|
Amsterdam, A., Nissen, R.M., Sun, Z., Swindell, E., Farrington, S., and Hopkins, N. (2004) Identification of 315 genes essential for early zebrafish development. Proceedings of the National Academy of Sciences of the United States of America. 101(35):12792-12797
|
Herzog, W., Sonntag, C., Von Der Hardt, S., Roehl, H.H., Varga, Z.M., and Hammerschmidt, M. (2004) Fgf3 signaling from the ventral diencephalon is required for early specification and subsequent survival of the zebrafish adenohypophysis. Development (Cambridge, England). 131(15):3681-3692
|
Herzog, W., Sonntag, C., Walderich, B., Odenthal, J., Maischein, H.M., and Hammerschmidt, M. (2004) Genetic analysis of adenohypophysis formation in zebrafish. Molecular endocrinology (Baltimore, Md.). 18(5):1185-1195
|
Hammond, K.L., Loynes, H.E., Folarin, A.A., Smith, J., and Whitfield, T.T. (2003) Hedgehog signalling is required for correct anteroposterior patterning of the zebrafish otic vesicle. Development (Cambridge, England). 130(7):1403-1417
|
|
|
|
|
Strausberg,R.L., Feingold,E.A., Grouse,L.H., Derge,J.G., Klausner,R.D., Collins,F.S., Wagner,L., Shenmen,C.M., Schuler,G.D., Altschul,S.F., Zeeberg,B., Buetow,K.H., Schaefer,C.F., Bhat,N.K., Hopkins,R.F., Jordan,H., Moore,T., Max,S.I., Wang,J., Hsieh,F., Diatchenko,L., Marusina,K., Farmer,A.A., Rubin,G.M., Hong,L., Stapleton,M., Soares,M.B., Bonaldo,M.F., Casavant,T.L., Scheetz,T.E., Brownstein,M.J., Usdin,T.B., Toshiyuki,S., Carninci,P., Prange,C., Raha,S.S., Loquellano,N.A., Peters,G.J., Abramson,R.D., Mullahy,S.J., Bosak,S.A., McEwan,P.J., McKernan,K.J., Malek,J.A., Gunaratne,P.H., Richards,S., Worley,K.C., Hale,S., Garcia,A.M., Gay,L.J., Hulyk,S.W., Villalon,D.K., Muzny,D.M., Sodergren,E.J., Lu,X., Gibbs,R.A., Fahey,J., Helton,E., Ketteman,M., Madan,A., Rodrigues,S., Sanchez,A., Whiting,M., Madan,A., Young,A.C., Shevchenko,Y., Bouffard,G.G., Blakesley,R.W., Touchman,J.W., Green,E.D., Dickson,M.C., Rodriguez,A.C., Grimwood,J., Schmutz,J., Myers,R.M., Butterfield,Y.S., Krzywinski,M.I., Skalska,U., Smailus,D.E., Schnerch,A., Schein,J.E., Jones,S.J., and Marra,M.A. (2002) Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. Proceedings of the National Academy of Sciences of the United States of America. 99(26):16899-903
|
|
|
|
Haffter, P., Granato, M., Brand, M., Mullins, M.C., Hammerschmidt, M., Kane, D.A., Odenthal, J., van Eeden, F.J., Jiang, Y.J., Heisenberg, C.P., Kelsh, R.N., Furutani-Seiki, M., Vogelsang, E., Beuchle, D., Schach, U., Fabian, C., and Nüsslein-Volhard, C. (1996) The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development (Cambridge, England). 123:1-36
|
Whitfield, T.T., Granato, M., van Eeden, F.J., 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., and Nüsslein-Volhard, C. (1996) Mutations affecting development of the zebrafish inner ear and lateral line. Development (Cambridge, England). 123:241-254
|