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Summary Anatomy Item Literature (397) Expression Attributions Wiki
ECB-ANAT-14

Papers associated with digestive system

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The insertion of mesenchyme cells into the ectoderm during differentiation in Sea urchin embryos., Spiegel E., Rouxs Arch Dev Biol. October 1, 1992; 201 (6): 383-388.


Cell Movements during Gastrulation of Starfish Larvae., Kuraishi R., Biol Bull. October 1, 1992; 183 (2): 258-268.


Commitment along the dorsoventral axis of the sea urchin embryo is altered in response to NiCl2., Hardin J., Development. November 1, 1992; 116 (3): 671-85.


Transient, localized accumulation of alpha-spectrin during sea urchin morphogenesis., Wessel GM., Dev Biol. January 1, 1993; 155 (1): 161-71.


A complete second gut induced by transplanted micromeres in the sea urchin embryo., Ransick A., Science. February 19, 1993; 259 (5098): 1134-8.


A role for regulated secretion of apical extracellular matrix during epithelial invagination in the sea urchin., Lane MC., Development. March 1, 1993; 117 (3): 1049-60.


Expression of type IV collagen-degrading activity during early embryonal development in the sea urchin and the arresting effects of collagen synthesis inhibitors on embryogenesis., Karakiulakis G., J Cell Biochem. May 1, 1993; 52 (1): 92-106.


Later embryogenesis: regulatory circuitry in morphogenetic fields., Davidson EH., Development. July 1, 1993; 118 (3): 665-90.


Highly Derived Coelomic and Water-Vascular Morphogenesis in a Starfish with Pelagic Direct Development., Janies DA., Biol Bull. August 1, 1993; 185 (1): 56-76.


Immunocytochemical mapping of the novel echinoderm neuropeptide SALMFamide 1 (S1) in the starfish Asterias rubens., Moore SJ., Cell Tissue Res. December 1, 1993; 274 (3): 605-18.


Ligand-dependent stimulation of introduced mammalian brain receptors alters spicule symmetry and other morphogenetic events in sea urchin embryos., Cameron RA., Mech Dev. January 1, 1994; 45 (1): 31-47.


An N-linked carbohydrate-containing extracellular matrix determinant plays a key role in sea urchin gastrulation., Ingersoll EP., Dev Biol. June 1, 1994; 163 (2): 351-66.


Complexity and organization of DNA-protein interactions in the 5''-regulatory region of an endoderm-specific marker gene in the sea urchin embryo., Yuh CH., Mech Dev. August 1, 1994; 47 (2): 165-86.


Endo16, a large multidomain protein found on the surface and ECM of endodermal cells during sea urchin gastrulation, binds calcium., Soltysik-Española M., Dev Biol. September 1, 1994; 165 (1): 73-85.


Localisation of gamma aminobutyric acid (GABA)-like immunoreactivity in the echinoderm Asterias rubens., Newman SJ., Cell Tissue Res. October 1, 1994; 278 (1): 177-85.


Products, genetic linkage and limb patterning activity of a murine hedgehog gene., Chang DT., Development. November 1, 1994; 120 (11): 3339-53.


The univin gene encodes a member of the transforming growth factor-beta superfamily with restricted expression in the sea urchin embryo., Stenzel P., Dev Biol. November 1, 1994; 166 (1): 149-58.


A re-evaluation of subspecific variation and canine dimorphism in woolly spider monkeys (Brachyteles arachnoides)., Leigh SR., Am J Phys Anthropol. December 1, 1994; 95 (4): 435-42.


Recovery and phylogenetic analysis of novel archaeal rRNA sequences from a deep-sea deposit feeder., McInerney JO., Appl Environ Microbiol. April 1, 1995; 61 (4): 1646-8.


Gastrulation in the sea urchin, Strongylocentrotus purpuratus, is disrupted by the small laminin peptides YIGSR and IKVAV., Hawkins RL., Cell Adhes Commun. May 1, 1995; 3 (2): 163-77.


Changes in Larval Morphology in the Evolution of Benthic Development by Patiriella exigua (Asteroidea: Asterinidae), a Comparison with the Larvae of Patiriella Species with Planktonic Development., Byrne M., Biol Bull. June 1, 1995; 188 (3): 293-305.


Selective inhibition of gastrulation in the starfish embryo by albuside B, an inosine analogue., Shimizu T., FEBS Lett. August 7, 1995; 369 (2-3): 221-4.


A sea urchin homologue of the chordate Brachyury (T) gene is expressed in the secondary mesenchyme founder cells., Harada Y., Development. September 1, 1995; 121 (9): 2747-54.


Expression of the actin gene family in embryos of the sea urchin Lytechinus pictus., Fang H., Dev Biol. January 10, 1996; 173 (1): 306-17.


Regulative capacity of the archenteron during gastrulation in the sea urchin., McClay DR., Development. February 1, 1996; 122 (2): 607-16.


An extracellular matrix molecule that is selectively expressed during development is important for gastrulation in the sea urchin embryo., Berg LK., Development. February 1, 1996; 122 (2): 703-13.


Completely Direct Development of Abatus cordatus, a Brooding Schizasterid (Echinodermata: Echinoidea) from Kerguelen, With Description of Perigastrulation, a Hypothetical New Mode of Gastrulation., Schatt P., Biol Bull. February 1, 1996; 190 (1): 24-44.


Modular cis-regulatory organization of Endo16, a gut-specific gene of the sea urchin embryo., Yuh CH., Development. April 1, 1996; 122 (4): 1069-82.


To be Stiff or to be Soft-the Dilemma of the Echinoid Tooth Ligament. I. Morphology., Birenheide R., Biol Bull. April 1, 1996; 190 (2): 218-230.


To be Stiff or to be Soft-the Dilemma of the Echinoid Tooth Ligament. II. Mechanical Properties., Birenheide R., Biol Bull. April 1, 1996; 190 (2): 231-236.


Spatio-temporal expression of pamlin during early embryogenesis in sea urchin and importance of N-linked glycosylation for the glycoprotein function., Katow H., Rouxs Arch Dev Biol. May 1, 1996; 205 (7-8): 371-381.


Evolution of Intragonadal Development in the Diminutive Asterinid Sea Stars Patiriella vivipara and P. parvivipara with an Overview of Development in the Asterinidae., Byrne M., Biol Bull. August 1, 1996; 191 (1): 17-26.


Modular cis-regulatory organization of developmentally expressed genes: two genes transcribed territorially in the sea urchin embryo, and additional examples., Kirchhamer CV., Proc Natl Acad Sci U S A. September 3, 1996; 93 (18): 9322-8.


Alternative splicing of the Endo16 transcript produces differentially expressed mRNAs during sea urchin gastrulation., Godin RE., Dev Biol. October 10, 1996; 179 (1): 148-59.


The initial phase of gastrulation in sea urchins is accompanied by the formation of bottle cells., Nakajima Y., Dev Biol. November 1, 1996; 179 (2): 436-46.


Expression of S9 and actin CyIIa mRNAs reveals dorso-ventral polarity and mesodermal sublineages in the vegetal plate of the sea urchin embryo., Miller RN., Mech Dev. November 1, 1996; 60 (1): 3-12.


SpHbox7, a new Abd-B class homeobox gene from the sea urchin Strongylocentrotus purpuratus: insights into the evolution of hox gene expression and function., Dobias SL., Dev Dyn. December 1, 1996; 207 (4): 450-60.


Spatial expression of a forkhead homologue in the sea urchin embryo., Harada Y., Mech Dev. December 1, 1996; 60 (2): 163-73.


Very early and transient vegetal-plate expression of SpKrox1, a Krüppel/Krox gene from Stronglyocentrotus purpuratus., Wang W., Mech Dev. December 1, 1996; 60 (2): 185-95.


The evolution of Msx gene function: expression and regulation of a sea urchin Msx class homeobox gene., Dobias SL., Mech Dev. January 1, 1997; 61 (1-2): 37-48.


SpHmx, a sea urchin homeobox gene expressed in embryonic pigment cells., Martinez P., Dev Biol. January 15, 1997; 181 (2): 213-22.


Cloning and characterization of novel beta integrin subunits from a sea urchin., Marsden M., Dev Biol. January 15, 1997; 181 (2): 234-45.


Short-range cell-cell signals control ectodermal patterning in the oral region of the sea urchin embryo., Hardin J., Dev Biol. February 1, 1997; 182 (1): 134-49.


Histological distribution of FR-1, a cyclic RGDS-peptide, binding sites during early embryogenesis, and isolation and initial characterization of FR-1 receptor in the sand dollar embryo., Katow H., Dev Growth Differ. April 1, 1997; 39 (2): 207-19.


Design strategies of sea urchin teeth: structure, composition and micromechanical relations to function., Wang RZ., Philos Trans R Soc Lond B Biol Sci. April 29, 1997; 352 (1352): 469-80.


The allocation of early blastomeres to the ectoderm and endoderm is variable in the sea urchin embryo., Logan CY., Development. June 1, 1997; 124 (11): 2213-23.


Oral/aboral ectoderm differentiation of the sea urchin embryo depends on a planar or secretory signal from the vegetal hemisphere., Yoshikawa S., Dev Growth Differ. June 1, 1997; 39 (3): 319-27.


Isolation and characterization of an endodermally derived, proteoglycan-like extracellular matrix molecule that may be involved in larval starfish digestive tract morphogenesis., Reimer CL., Dev Growth Differ. June 1, 1997; 39 (3): 381-97.


LiCl perturbs ectodermal veg1 lineage allocations in Strongylocentrotus purpuratus embryos., Cameron RA., Dev Biol. July 15, 1997; 187 (2): 236-9.


Identification and localization of a sea urchin Notch homologue: insights into vegetal plate regionalization and Notch receptor regulation., Sherwood DR., Development. September 1, 1997; 124 (17): 3363-74.

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