Results 1 - 19 of 19 results
Large-scale gene expression study in the ophiuroid Amphiura filiformis provides insights into evolution of gene regulatory networks. , Dylus DV , Czarkwiani A, Stångberg J, Ortega-Martinez O, Dupont S, Oliveri P ., Evodevo. January 11, 2016; 7 2.
The impact of gene expression variation on the robustness and evolvability of a developmental gene regulatory network. , Garfield DA, Runcie DE, Babbitt CC, Haygood R, Nielsen WJ, Wray GA ., PLoS Biol. October 1, 2013; 11 (10): e1001696.
Diversification of oral and aboral mesodermal regulatory states in pregastrular sea urchin embryos. , Materna SC, Ransick A, Li E, Davidson EH ., Dev Biol. March 1, 2013; 375 (1): 92-104.
Barcoded DNA-tag reporters for multiplex cis-regulatory analysis. , Nam J , Davidson EH ., PLoS One. January 1, 2012; 7 (4): e35934.
Uncoupling of complex regulatory patterning during evolution of larval development in echinoderms. , Yankura KA, Martik ML, Jennings CK, Hinman VF ., BMC Biol. November 30, 2010; 8 143.
Cis-regulatory analysis of the sea urchin pigment cell gene polyketide synthase. , Calestani C , Rogers DJ., Dev Biol. April 15, 2010; 340 (2): 249-55.
Monte Carlo analysis of an ODE Model of the Sea Urchin Endomesoderm Network. , Kühn C, Wierling C, Kühn A, Klipp E, Panopoulou G, Lehrach H, Poustka AJ., BMC Syst Biol. August 23, 2009; 3 83.
Gene regulatory network interactions in sea urchin endomesoderm induction. , Sethi AJ, Angerer RC , Angerer LM ., PLoS Biol. February 3, 2009; 7 (2): e1000029.
Krüppel-like is required for nonskeletogenic mesoderm specification in the sea urchin embryo. , Yamazaki A, Kawabata R, Shiomi K, Tsuchimoto J, Kiyomoto M , Amemiya S , Yamaguchi M., Dev Biol. February 15, 2008; 314 (2): 433-42.
Caught in the evolutionary act: precise cis-regulatory basis of difference in the organization of gene networks of sea stars and sea urchins. , Hinman VF , Nguyen A, Davidson EH ., Dev Biol. December 15, 2007; 312 (2): 584-95.
SpGataE, a Strongylocentrotus purpuratus ortholog of mammalian Gata4/5/6: protein expression, interaction with putative target gene spec2a, and identification of friend of Gata factor SpFog1. , Kiyama T, Klein WH ., Dev Genes Evol. September 1, 2007; 217 (9): 651-63.
Exclusive developmental functions of gatae cis-regulatory modules in the Strongylocentrorus purpuratus embryo. , Lee PY , Nam J , Davidson EH ., Dev Biol. July 15, 2007; 307 (2): 434-45.
A global view of gene expression in lithium and zinc treated sea urchin embryos: new components of gene regulatory networks. , Poustka AJ, Kühn A, Groth D, Weise V, Yaguchi S , Burke RD , Herwig R, Lehrach H, Panopoulou G., Genome Biol. January 1, 2007; 8 (5): R85.
Repression of mesodermal fate by foxa, a key endoderm regulator of the sea urchin embryo. , Oliveri P , Walton KD, Davidson EH , McClay DR ., Development. November 1, 2006; 133 (21): 4173-81.
Strongylocentrotus purpuratus transcription factor GATA-E binds to and represses transcription at an Otx-Goosecoid cis-regulatory element within the aboral ectoderm-specific spec2a enhancer. , Kiyama T, Zhang N, Dayal S, Yun Lee P, Liang S, Villinski JT, Klein WH ., Dev Biol. April 15, 2005; 280 (2): 436-47.
Expression of Spgatae, the Strongylocentrotus purpuratus ortholog of vertebrate GATA4/5/6 factors. , Lee PY , Davidson EH ., Gene Expr Patterns. December 1, 2004; 5 (2): 161-5.
Creation of cis-regulatory elements during sea urchin evolution by co-option and optimization of a repetitive sequence adjacent to the spec2a gene. , Dayal S, Kiyama T, Villinski JT, Zhang N, Liang S, Klein WH ., Dev Biol. September 15, 2004; 273 (2): 436-53.
An otx cis-regulatory module: a key node in the sea urchin endomesoderm gene regulatory network. , Yuh CH, Dorman ER, Howard ML, Davidson EH ., Dev Biol. May 15, 2004; 269 (2): 536-51.
Expression of a gene encoding a Gata transcription factor during embryogenesis of the starfish Asterina miniata. , Hinman VF , Davidson EH ., Gene Expr Patterns. August 1, 2003; 3 (4): 419-22.