留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Liver development in zebrafish (Danio rerio)

Ting Tao Jinrong Peng

Ting Tao, Jinrong Peng. Liver development in zebrafish (Danio rerio)[J]. Journal of Genetics and Genomics, 2009, 36(6): 325-334. doi: 10.1016/S1673-8527(08)60121-6
Citation: Ting Tao, Jinrong Peng. Liver development in zebrafish (Danio rerio)[J]. Journal of Genetics and Genomics, 2009, 36(6): 325-334. doi: 10.1016/S1673-8527(08)60121-6

doi: 10.1016/S1673-8527(08)60121-6

Liver development in zebrafish (Danio rerio)

More Information
    • 关键词:
    •  / 
    •  / 
    •  / 
    •  
  • [1] Allende, M.L., Amsterdam, A., Becker, T. et al. Insertional mutagenesis in zebrafish identifies two novel genes, pescadillo and dead eye, essential for embryonic development Genes Dev., 10 (1996),pp. 3141-3155
    [2] Amali, A.A., Rekha, R.D., Lin, C.J. et al. Thioacetamide induced liver damage in zebrafish embryo as a disease model for steatohepatitis J. Biomed. Sci., 13 (2006),pp. 225-232
    [3] Biemar, F., Argenton, F., Schmidtke, R. et al. Pancreas development in zebrafish: Early dispersed appearance of endocrine hormone expressing cells and their convergence to form the definitive islet Dev. Biol., 230 (2001),pp. 189-203
    [4] Blouin, A., Bolender, R.P., Weibel, E.R. Distribution of organelles and membranes between hepatocytes and nonhepatocytes in the rat liver parenchyma. A stereological study J. Cell Biol., 72 (1977),pp. 441-455
    [5] Bort, R., Signore, M., Tremblay, K. et al. Hex homeobox gene controls the transition of the endoderm to a pseudostratified, cell emergent epithelium for liver bud development Dev. Biol., 290 (2006),pp. 44-56
    [6] Braunbeck, T., Gorge, G., Storch, V. et al. Ecotoxicol. Environ. Saf., 19 (1990),pp. 355-374
    [7] Chen, J., Ng, S.M., Chang, C.Q. et al. Genes Dev., 23 (2009),pp. 278-290
    [8] Chen, J., Ruan, H., Ng, S.M. et al. Loss of function of def selectively up-regulates Δ113p53 expression to arrest expansion growth of digestive organs in zebrafish Genes Dev., 19 (2005),pp. 2900-2911
    [9] Cheng, W., Guo, L., Zhang, Z.H. et al. HNF factors form a network to regulate liver-enriched genes in zebrafish Dev. Biol., 294 (2006),pp. 482-496
    [10] Chocron, S., Verhoeven, M.C., Rentzsch, F. et al. Zebrafish Bmp4 regulates left-right asymmetry at two distinct developmental time points Dev. Biol., 305 (2007),pp. 577-588
    [11] Chung, W.S., Shin, C.H., Stainier, D.Y.R. Bmp2 signaling regulates the hepatic versus pancreatic fate decision Dev. Cell, 15 (2008),pp. 738-748
    [12] Chung, W.S., Stainier, D.Y.R. Intra-endodermal interactions are required for pancreatic beta cell induction Dev. Cell, 14 (2008),pp. 582-593
    [13] Concordet, J.P., Ingham, P. Developmental biology—catch of the decade Nature, 369 (1994),pp. 19-20
    [14] Detrich, H.W., Kieran, M.W., Chan, F.Y. et al. Intraembryonic hematopoietic cell migration during vertebrate development Proc. Natl. Acad. Sci. USA, 92 (1995),pp. 10713-10717
    [15] Deutsch, G., Jung, J.N., Zheng, M.H. et al. A bipotential precursor population for pancreas and liver within the embryonic endoderm Development, 128 (2001),pp. 871-881
    [16] Dienstag, J.L. Hepatitis B virus infection N Engl. J. Med., 359 (2008),pp. 1486-1500
    [17] Dong, P.D.S., Munson, C.A., Norton, W. et al. Fgf10 regulates hepatopancreatic ductal system patterning and differentiation Nat. Genet., 39 (2007),pp. 397-402
    [18] Douarin, N.M. An experimental analysis of liver development Med. Biol., 53 (1975),pp. 427-455
    [19] Driever, W., SolnicaKrezel, L., Schier, A.F. et al. A genetic screen for mutations affecting embryogenesis in zebrafish Development, 123 (1996),pp. 37-46
    [20] Duncan, S.A. Mechanisms controlling early development of the liver Mech. Dev., 120 (2003),pp. 19-33
    [21] Farooq, M., Sulochana, K.N., Pan, X.F. et al. Histone deacetylase 3 (hdac3) is specifically required for liver development in zebrafish Dev. Biol., 317 (2008),pp. 336-353
    [22] Field, H.A., Ober, E.A., Roeser, T. et al. Formation of the digestive system in zebrafish. I. Liver morphogenesis Dev. Biol., 253 (2003),pp. 279-290
    [23] Galarneau, L., Pare, J.F., Allard, D. et al. Mol. Cell. Biol., 16 (1996),pp. 3853-3865
    [24] Godinho, L., Mumm, J.S., Williams, P.R. et al. Targeting of amacrine cell neurites to appropriate synaptic laminae in the developing zebrafish retina Development, 132 (2005),pp. 5069-5079
    [25] Grunwald, D.J., Eisen, J.S. Headwaters of the zebrafish—emergence of a new model vertebrate Nat. Rev. Genet., 3 (2002),pp. 717-724
    [26] Gualdi, R., Bossard, P., Zheng, M.H. et al. Genes Dev., 10 (1996),pp. 1670-1682
    [27] Haffter, P., Granato, M., Brand, M. et al. Development, 123 (1996),pp. 1-36
    [28] Her, G.M., Chiang, C.C., Chen, W.Y. et al. FEBS Lett., 538 (2003),pp. 125-133
    [29] Holtzinger, A., Evans, T. Gata4 regulates the formation of multiple organs Development, 132 (2005),pp. 4005-4014
    [30] Horne-Badovinac, S., Lin, D., Waldron, S. et al. Positional cloning of heart and soul reveals multiple roles for PKC lambda in zebrafish organogenesis Curr. Biol., 11 (2001),pp. 1492-1502
    [31] Horne-Badovinac, S., Rebagliati, M., Stainier, D.Y.R. A cellular framework for gut-looping morphogenesis in zebrafish Science, 302 (2003),pp. 662-665
    [32] Huang, H., Ruan, H., Aw, M.Y. et al. Mypt1-mediated spatial positioning of Bmp2-producing cells is essential for liver organogenesis Development, 135 (2008),pp. 3209-3218
    [33] Jin, H., Sood, R., Xu, J. et al. Definitive hematopoietic stem/progenitor cells manifest distinct differentiation output in the zebrafish VDA and PBI Development, 136 (2009),pp. 647-654
    [34] Jung, J.N., Zheng, M.H., Goldfarb, M. et al. Initiation of mammalian liver development from endoderm by fibroblast growth factors Science, 284 (1999),pp. 1998-2003
    [35] Kahn, P. Zebrafish hit the big time Science, 264 (1994),pp. 904-905
    [36] Kawamoto, S., Matsumoto, Y., Mizuno, K. et al. Expression profiles of active genes in human and mouse livers Gene, 174 (1996),pp. 151-158
    [37] Korzh, S., Emelyanov, A., Korzh, V. Developmental analysis of ceruloplasmin gene and liver formation in zebrafish Mech. Dev., 103 (2001),pp. 137-139
    [38] Lam, S.H., Wu, Y.L., Vega, V.B. et al. Conservation of gene expression signatures between zebrafish and human liver tumors and tumor progression Nat. Biotechnol., 24 (2006),pp. 73-75
    [39] Lee, C.S., Friedman, J.R., Fulmer, J.T. et al. The initiation of liver development is dependent on Foxa transcription factors Nature, 435 (2005),pp. 944-947
    [40] Lee, Y., Grill, S., Sanchez, A. et al. Fgf signaling instructs position-dependent growth rate during zebrafish fin regeneration Development, 132 (2005),pp. 5173-5183
    [41] Li, M., Xie, Y.H., Kong, Y.Y. et al. Cloning and characterization of a novel human hepatocyte transcription factor, hB1F, which finds and activates enhancer II of hepatitis B virus J. Biol. Chem., 273 (1998),pp. 29022-29031
    [42] Li, Z., Korzh, V., Gong, Z.Y. Localized rbp4 expression in the yolk syncytial layer plays a role in yolk cell extension and early liver development BMC Dev. Biol., 7 (2007),p. 117
    [43] Lin, W.W., Wang, H.W., Sum, C. et al. Biochem. J., 348 (2000),pp. 439-446
    [44] Lorent, K., Yeo, S.Y., Oda, T. et al. Inhibition of Jagged-mediated Notch signaling disrupts zebrafish biliary development and generates multi-organ defects compatible with an Alagille syndrome phenocopy Development, 131 (2004),pp. 5753-5766
    [45] Matsumoto, K., Yoshitomi, H., Rossant, J. et al. Liver organogenesis promoted by endothelial cells prior to vascular function Science, 294 (2001),pp. 559-563
    [46] Matthews, R.P., Lorent, K., Manoral-Mobias, R. et al. TNF alpha-dependent hepatic steatosis and liver degeneration caused by mutation of zebrafish S-adenosylhomocysteine hydrolase Development, 136 (2009),pp. 865-875
    [47] Matthews, R.P., Lorent, K., Russo, P. et al. Dev. Biol., 274 (2004),pp. 245-259
    [48] Mayer, A.N., Fishman, M.C. Development, 130 (2003),pp. 3917-3928
    [49] Mullins, M.C., Hammerschmidt, M., Haffter, P. et al. Large-scale mutagenesis in the zebrafish—in search of genes-controlling development in a vertebrate Curr. Biol., 4 (1994),pp. 189-202
    [50] Noel, E.S., Casal-Sueiro, A., Busch-Nentwich, E. et al. Organ-specific requirements for Hdac1 in liver and pancreas formation Dev. Biol., 322 (2008),pp. 237-250
    [51] Ober, E.A., Olofsson, B., Makinen, T. et al. Vegfc is required for vascular development and endoderm morphogenesis in zebrafish EMBO Rep., 5 (2004),pp. 78-84
    [52] Ober, E.A., Verkade, H., Field, H.A. et al. Mesodermal Wnt2b signalling positively regulates liver specification Nature, 442 (2006),pp. 688-691
    [53] Pack, M., SolnicaKrezel, L., Malicki, J. et al. Mutations affecting development of zebrafish digestive organs Development, 123 (1996),pp. 321-328
    [54] Passeri, M.J., Cinaroglu, A., Gao, C. et al. Hepatic steatosis in response to acute alcohol exposure in zebrafish requires sterol regulatory element binding protein activation Hepatology, 49 (2009),pp. 443-452
    [55] Pyati, U.J., Cooper, M.S., Davidson, A.J. et al. Sustained Bmp signaling is essential for cloaca development in zebrafish Development, 133 (2006),pp. 2275-2284
    [56] Pyati, U.J., Webb, A.E., Kimelman, D. Transgenic zebrafish reveal stage-specific roles for Bmp signaling in ventral and posterior mesoderm development Development, 132 (2005),pp. 2333-2343
    [57] Rai, K., Chidester, S., Zavala, C.V. et al. Dnmt2 functions in the cytoplasm to promote liver, brain, and retina development in zebrafish Genes Dev., 21 (2007),pp. 261-266
    [58] Rai, K., Nadauld, L.D., Chidester, S. et al. Zebra fish Dnmt1 and Suv39h1 regulate organ-specific terminal differentiation during development Mol. Cell. Biol., 26 (2006),pp. 7077-7085
    [59] Reimold, A.M., Etkin, A., Clauss, I. et al. An essential role in liver development for transcription factor XBP-1 Genes Dev., 14 (2000),pp. 152-157
    [60] Reiter, J.F., Alexander, J., Rodaway, A. et al. Gata5 is required for the development of the heart and endoderm in zebrafish Genes Dev., 13 (1999),pp. 2983-2995
    [61] Reiter, J.F., Kikuchi, Y., Stainier, D.Y.R. Multiple roles for Gata5 in zebrafish endoderm formation Development, 128 (2001),pp. 125-135
    [62] Rossi, J.M., Dunn, N.R., Hogan, B.L.M. et al. Distinct mesodermal signals, including BMPs from the septum transversum mesenchyme, are required in combination for hepatogenesis from the endoderm Genes Dev., 15 (2001),pp. 1998-2009
    [63] Sadler, K.C., Amsterdam, A., Soroka, C. et al. A genetic screen in zebrafish identifies the mutants vps18, nf2 and foie gras as models of liver disease Development, 132 (2005),pp. 3561-3572
    [64] Sadler, K.C., Krahn, K.N., Gaur, N.A. et al. Liver growth in the embryo and during liver regeneration in zebrafish requires the cell cycle regulator, uhrf1 Proc. Natl. Acad. Sci. USA, 104 (2007),pp. 1570-1575
    [65] Shin, D., Shin, C.H., Tucker, J. et al. Bmp and Fgf signaling are essential for liver specification in zebrafish Development, 134 (2007),pp. 2041-2050
    [66] Solnicakrezel, L., Schier, A.F., Driever, W. Efficient recovery of ENU-induced mutations from the zebrafish germline Genetics, 136 (1994),pp. 1401-1420
    [67] Sosa-Pineda, B., Wigle, J.T., Oliver, G. Hepatocyte migration during liver development requires Prox1 Nat. Genet., 25 (2000),pp. 254-255
    [68] Stafford, D., Prince, V.E. Retinoic acid signaling is required for a critical early step in zebrafish pancreatic development Curr. Biol., 12 (2002),pp. 1215-1220
    [69] Stainier, D.Y.R. Zebrafish genetics and vertebrate heart formation Nat. Rev. Genet., 2 (2001),pp. 39-48
    [70] Streisinger, G., Walker, C., Dower, N. et al. Nature, 291 (1981),pp. 293-296
    [71] Sun, Z.X., Hopkins, N. Genes Dev., 15 (2001),pp. 3217-3229
    [72] Thisse, C., Zon, L.I. Organogenesis—heart and blood formation from the zebrafish point of view Science, 295 (2002),pp. 457-462
    [73] Tiso, N., Filippi, A., Pauls, S. et al. BMP signalling regulates anteroposterior endoderm patterning in zebrafish Mech. Dev., 118 (2002),pp. 29-37
    [74] Wallace, K.N., Pack, M. Unique and conserved aspects of gut development in zebrafish Dev. Biol., 255 (2003),pp. 12-29
    [75] Wallace, K.N., Yusuff, S., Sonntag, J.M. et al. Zebrafish hhex regulates liver development and digestive organ chirality Genesis, 30 (2001),pp. 141-143
    [76] Ward, A.B., Warga, R.M., Prince, V.E. Origin of the zebrafish endocrine and exocrine pancreas Dev. Dyn., 236 (2007),pp. 1558-1569
    [77] Zaret, K.S. Regulatory phases of early liver development: Paradigms of organogenesis Nat. Rev. Genet., 3 (2002),pp. 499-512
    [78] Zhao, R.O., Watt, A.J., Li, J.X. et al. GATA6 is essential for embryonic development of the liver but dispensable for early heart formation Mol. Cell. Biol., 25 (2005),pp. 2622-2631
  • 加载中
计量
  • 文章访问数:  126
  • HTML全文浏览量:  35
  • PDF下载量:  1
  • 被引次数: 0
出版历程
  • 收稿日期:  2009-02-16
  • 录用日期:  2009-04-17
  • 修回日期:  2009-04-17
  • 网络出版日期:  2009-06-16
  • 刊出日期:  2009-06-20

目录

    /

    返回文章
    返回