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Summary Stage Literature (2200) Attributions Wiki
XB-STAGE-7

Papers associated with gastrula stage

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[Effect of a short-term disturbance of the cell contacts on the mesodermal differentiation of clawed toad embryos]., Georgiev PG, Belousov LV., Ontogenez. January 1, 1986; 17 (3): 256-62.


Cells from Xenopus laevis gastrulae adhere to fibronectin-sepharose beads and other lectin coated beads., Johnson KE, Silver MH., Scan Electron Microsc. January 1, 1986; (Pt 2): 671-8.


[Movements of cellular material of the dorsal wall in clawed-toad embryos during gastrulation and neurulation]., Petrov KV, Belousov LV., Ontogenez. January 1, 1986; 17 (1): 78-83.


Cytoskeletal changes during oogenesis and early development of Xenopus laevis., Wylie CC, Heasman J, Parke JM, Anderton B, Tang P., J Cell Sci Suppl. January 1, 1986; 5 329-41.          


Development of the ectoderm in Xenopus: tissue specification and the role of cell association and division., Jones EA, Woodland HR., Cell. January 31, 1986; 44 (2): 345-55.                


Isolation of plasma membranes from Xenopus embryos., Bretzel G, Janeczek J, Born J, John M, Tiedemann H, Tiedemann H., Rouxs Arch Dev Biol. February 1, 1986; 195 (2): 117-122.


Protein synthesis and messenger RNA levels along the animal-vegetal axis during early Xenopus development., Smith RC., J Embryol Exp Morphol. June 1, 1986; 95 15-35.


Level of histone H4 mRNA in Xenopus laevis embryonic cells cultured in the absence of cell adhesion., Atsuchi Y, Tashiro K, Yamana K, Shiokawa K., J Embryol Exp Morphol. November 1, 1986; 98 175-85.


Stage-specific keratins in Xenopus laevis embryos and tadpoles: the XK81 gene family., Miyatani S, Winkles JA, Sargent TD, Dawid IB., J Cell Biol. November 1, 1986; 103 (5): 1957-65.


Xenopus myc proto-oncogene during development: expression as a stable maternal mRNA uncoupled from cell division., Taylor MV, Gusse M, Evan GI, Dathan N, Mechali M., EMBO J. December 20, 1986; 5 (13): 3563-70.


[Rearrangement of the morphological structure and degradation of the extracellular matrix in amphibian embryos after short-term disruption of cell contacts]., Georgiev PG, Belousov LV., Ontogenez. January 1, 1987; 18 (5): 535-40.


Characterization of repetitive DNA transcripts isolated from a Xenopus laevis gastrula-stage cDNA clone bank., Meyerhof W, Korge E, Knöchel W., Rouxs Arch Dev Biol. January 1, 1987; 196 (1): 22-29.


Vegetal pole cells and commitment to form endoderm in Xenopus laevis., Wylie CC, Snape A, Heasman J, Smith JC., Dev Biol. February 1, 1987; 119 (2): 496-502.


Cloning of nucleoplasmin from Xenopus laevis oocytes and analysis of its developmental expression., Bürglin TR, Mattaj IW, Newmeyer DD, Zeller R, De Robertis EM., Genes Dev. March 1, 1987; 1 (1): 97-107.                


Fate map for the 32-cell stage of Xenopus laevis., Dale L, Slack JM., Development. April 1, 1987; 99 (4): 527-51.                


Cell-type-specific expression of epidermal cytokeratin genes during gastrulation of Xenopus laevis., Jamrich M, Sargent TD, Dawid IB., Genes Dev. April 1, 1987; 1 (2): 124-32.                


Binding of anti-fibronectin to early amphibian ectoderm does not result in inhibition of neural induction under in vitro conditions., Grunz H, Darribère T, Boucaut J-., Rouxs Arch Dev Biol. April 1, 1987; 196 (4): 203-209.


Localization of Xenopus homoeo-box gene transcripts during embryogenesis and in the adult nervous system., Carrasco AE, Malacinski GM., Dev Biol. May 1, 1987; 121 (1): 69-81.              


Cell lineages generating axial muscle in the zebrafish embryo., Kimmel CB, Warga RM., Nature. May 21, 1987; 327 (6119): 234-7.


Regional specification within the mesoderm of early embryos of Xenopus laevis., Dale L, Slack JM., Development. June 1, 1987; 100 (2): 279-95.


The initiation of new gene transcription during Xenopus gastrulation requires immediately preceding protein synthesis., Cascio S, Gurdon JB., Development. June 1, 1987; 100 (2): 297-305.


Acceleration of the rate of processing of 40 S pre-rRNA during Xenopus laevis embryogenesis., Shiokawa K, Fu Y, Yamana K., Dev Biol. August 1, 1987; 122 (2): 586-8.


A homeobox-containing marker of posterior neural differentiation shows the importance of predetermination in neural induction., Sharpe CR, Fritz A, De Robertis EM, Gurdon JB., Cell. August 28, 1987; 50 (5): 749-58.


Posterior expression of a homeobox gene in early Xenopus embryos., Condie BG, Harland RM., Development. September 1, 1987; 101 (1): 93-105.


An amphibian cytoskeletal-type actin gene is expressed exclusively in muscle tissue., Mohun TJ, Garrett N., Development. October 1, 1987; 101 (2): 393-402.              


Expression sequences and distribution of two primary cell adhesion molecules during embryonic development of Xenopus laevis., Levi G, Crossin KL, Edelman GM., J Cell Biol. November 1, 1987; 105 (5): 2359-72.                  


The organization of mesodermal pattern in Xenopus laevis: experiments using a Xenopus mesoderm-inducing factor., Cooke J, Smith JC, Smith EJ, Yaqoob M., Development. December 1, 1987; 101 (4): 893-908.            


Differential accumulation of oocyte nuclear proteins by embryonic nuclei of Xenopus., Dreyer C., Development. December 1, 1987; 101 (4): 829-46.                    


The restrictive effect of early exposure to lithium upon body pattern in Xenopus development, studied by quantitative anatomy and immunofluorescence., Cooke J, Smith EJ., Development. January 1, 1988; 102 (1): 85-99.          


Structural analysis of the mitotic cycle in pre-gastrula Xenopus embryos., Montag M, Spring H, Trendelenburg MF., Chromosoma. January 1, 1988; 96 (3): 187-96.


Expression and segregation of nucleoplasmin during development in Xenopus., Litvin J, King ML., Development. January 1, 1988; 102 (1): 9-21.                    


Regulation of acetylcholine receptor transcript expression during development in Xenopus laevis., Baldwin TJ, Yoshihara CM, Blackmer K, Kintner CR, Burden SJ., J Cell Biol. February 1, 1988; 106 (2): 469-78.              


Differential stimulation of sea urchin early and late H2B histone gene expression by a gastrula nuclear extract after injection into Xenopus laevis oocytes., Maxson R, Ito M, Balcells S, Thayer M, French M, Lee F, Etkin L., Mol Cell Biol. March 1, 1988; 8 (3): 1236-46.


Reinvestigation of the role of the optic vesicle in embryonic lens induction., Grainger RM, Herry JJ, Henderson RA., Development. March 1, 1988; 102 (3): 517-26.


Replacement of maternal 40S rRNA precursor by newly synthesized precursor in early embryos of Xenopus laevis., Furuno N, Shiokawa K, Kobayashi H., Cell Struct Funct. April 1, 1988; 13 (2): 113-22.


A monoclonal antibody specific for an epidermal cell antigen of Xenopus laevis: electron microscopic observations using a gold-labeling method., Asada-Kubota M., J Histochem Cytochem. May 1, 1988; 36 (5): 515-21.


The entire mesodermal mantle behaves as Spemann's organizer in dorsoanterior enhanced Xenopus laevis embryos., Kao KR, Elinson RP., Dev Biol. May 1, 1988; 127 (1): 64-77.                      


Regional expression, pattern and timing of convergence and extension during gastrulation of Xenopus laevis., Keller R, Danilchik M., Development. May 1, 1988; 103 (1): 193-209.


Microinjection of synthetic Xhox-1A homeobox mRNA disrupts somite formation in developing Xenopus embryos., Harvey RP, Melton DA., Cell. June 3, 1988; 53 (5): 687-97.              


Inductive effects of fibroblast growth factor and lithium ion on Xenopus blastula ectoderm., Slack JM, Isaacs HV, Darlington BG., Development. July 1, 1988; 103 (3): 581-90.


Proto-oncogenes and embryonic development., Méchali M, Gusse M, Vriz S, Taylor M, Andéol Y, Moreau J, Hourdry J, Leibovici M, Brulfert A, Almouzni G., Biochimie. July 1, 1988; 70 (7): 895-8.  


Xenopus endo B is a keratin preferentially expressed in the embryonic notochord., LaFlamme SE, Jamrich M, Richter K, Sargent TD, Dawid IB., Genes Dev. July 1, 1988; 2 (7): 853-62.            


Prospective Neural Areas and their Morphogenetic Movements during Neural Plate Formation in the Xenopus Embryo. II. Disposition of Transplanted Ectoderm Pieces of X. borealis Animal Cap in Prospective Neural Areas of Albino X. laevis gastrulae.: (developmental fate/neural plate area/Xenopus embryo/chimera/quinacrine)., Suzuki AS, Harada K., Dev Growth Differ. August 1, 1988; 30 (4): 391-400.


Accumulation and decay of DG42 gene products follow a gradient pattern during Xenopus embryogenesis., Rosa F, Sargent TD, Rebbert ML, Michaels GS, Jamrich M, Grunz H, Jonas E, Winkles JA, Dawid IB., Dev Biol. September 1, 1988; 129 (1): 114-23.            


The expression of epidermal antigens in Xenopus laevis., Itoh K, Yamashita A, Kubota HY., Development. September 1, 1988; 104 (1): 1-14.                        


A possible maternal-effect mutant of Xenopus laevis: II. Studies of RNA synthesis in dissociated embryonic cells., Shiokawa K, Tashiro K, Nakakura N, Fu Y, Atsuchi Y, Nakazato S, Tsuzaki Y, Ikenishi K., Cell Differ Dev. September 1, 1988; 25 (1): 47-55.


Expression of Epi 1, an epidermis-specific marker in Xenopus laevis embryos, is specified prior to gastrulation., London C, Akers R, Phillips C., Dev Biol. October 1, 1988; 129 (2): 380-9.              


Expression of a histone H1-like protein is restricted to early Xenopus development., Smith RC, Dworkin-Rastl E, Dworkin MB., Genes Dev. October 1, 1988; 2 (10): 1284-95.              


Protein kinases in amphibian ectoderm induced for neural differentiation., Davids M., Rouxs Arch Dev Biol. October 1, 1988; 197 (6): 339-344.


Gene expression in the embryonic nervous system of Xenopus laevis., Richter K, Grunz H, Dawid IB., Proc Natl Acad Sci U S A. November 1, 1988; 85 (21): 8086-90.      

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