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Summary Expression Gene Literature (692) GO Terms (0) Nucleotides (7) Proteins (3) Interactants (691) Wiki
ECB--23195529

Papers associated with LOC100893907 (and ago1b)



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The painted sea urchin, Lytechinus pictus, as a genetically-enabled developmental model., Nesbit KT, Fleming T, Batzel G, Pouv A, Rosenblatt HD, Pace DA, Hamdoun A, Lyons DC., Methods Cell Biol. January 1, 2019; 150 105-123.


Genome evolution in the allotetraploid frog Xenopus laevis., Session AM, Uno Y, Kwon T, Chapman JA, Toyoda A, Takahashi S, Fukui A, Hikosaka A, Suzuki A, Kondo M, van Heeringen SJ, Quigley I, Heinz S, Ogino H, Ochi H, Hellsten U, Lyons JB, Simakov O, Putnam N, Stites J, Kuroki Y, Tanaka T, Michiue T, Watanabe M, Bogdanovic O, Lister R, Georgiou G, Paranjpe SS, van Kruijsbergen I, Shu S, Carlson J, Kinoshita T, Ohta Y, Mawaribuchi S, Jenkins J, Grimwood J, Schmutz J, Mitros T, Mozaffari SV, Suzuki Y, Haramoto Y, Yamamoto TS, Takagi C, Heald R, Miller K, Haudenschild C, Kitzman J, Nakayama T, Izutsu Y, Robert J, Fortriede J, Burns K, Lotay V, Karimi K, Yasuoka Y, Dichmann DS, Flajnik MF, Houston DW, Shendure J, DuPasquier L, Vize PD, Zorn AM, Ito M, Marcotte EM, Wallingford JB, Ito Y, Asashima M, Ueno N, Matsuda Y, Veenstra GJ, Fujiyama A, Harland RM, Taira M, Rokhsar DS., Nature. October 20, 2016; 538 (7625): 336-343.                          


Comparative Developmental Transcriptomics Reveals Rewiring of a Highly Conserved Gene Regulatory Network during a Major Life History Switch in the Sea Urchin Genus Heliocidaris., Israel JW, Martik ML, Byrne M, Raff EC, Raff RA, McClay DR, Wray GA., PLoS Biol. March 1, 2016; 14 (3): e1002391.            


Large-scale gene expression study in the ophiuroid Amphiura filiformis provides insights into evolution of gene regulatory networks., Dylus DV, Czarkwiani A, StĂ„ngberg J, Ortega-Martinez O, Dupont S, Oliveri P., Evodevo. January 1, 2016; 7 2.            


Reorganization of sea urchin gene regulatory networks at least 268 million years ago as revealed by oldest fossil cidaroid echinoid., Thompson JR, Petsios E, Davidson EH, Erkenbrack EM, Gao F, Bottjer DJ., Sci Rep. October 21, 2015; 5 15541.    


Comparative Study of Regulatory Circuits in Two Sea Urchin Species Reveals Tight Control of Timing and High Conservation of Expression Dynamics., Gildor T, Ben-Tabou de-Leon S., PLoS Genet. July 31, 2015; 11 (7): e1005435.          


Evolution of the RAG1-RAG2 locus: both proteins came from the same transposon., Kapitonov VV, Koonin EV., Biol Direct. April 28, 2015; 10 20.    


A simple method for estimating informative node age priors for the fossil calibration of molecular divergence time analyses., Nowak MD, Smith AB, Simpson C, Zwickl DJ., PLoS One. January 1, 2013; 8 (6): e66245.          


Predator crown-of-thorns starfish (Acanthaster planci) outbreak, mass mortality of corals, and cascading effects on reef fish and benthic communities., Kayal M, Vercelloni J, Lison de Loma T, Bosserelle P, Chancerelle Y, Geoffroy S, Stievenart C, Michonneau F, Penin L, Planes S, Adjeroud M., PLoS One. January 1, 2012; 7 (10): e47363.          


Embryonic, larval, and juvenile development of the sea biscuit Clypeaster subdepressus (Echinodermata: Clypeasteroida)., Vellutini BC, Migotto AE., PLoS One. March 22, 2010; 5 (3): e9654.                                


Gene regulatory network interactions in sea urchin endomesoderm induction., Sethi AJ, Angerer RC, Angerer LM., PLoS Biol. February 3, 2009; 7 (2): e1000029.                        


Molecular evolution of Phox-related regulatory subunits for NADPH oxidase enzymes., Kawahara T, Lambeth JD., BMC Evol Biol. September 27, 2007; 7 178.                            


RAG1 core and V(D)J recombination signal sequences were derived from Transib transposons., Kapitonov VV, Jurka J., PLoS Biol. June 1, 2005; 3 (6): e181.            


Aneuploidy, the somatic mutation that makes cancer a species of its own., Duesberg P, Rasnick D., Cell Motil Cytoskeleton. October 1, 2000; 47 (2): 81-107.

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