Spiralian gastrulation: germ layer formation, morphogenesis, and fate of the blastopore in the slipper snail Crepidula fornicata
暂无分享,去创建一个
[1] Antje H L Fischer,et al. Deployment of regulatory genes during gastrulation and germ layer specification in a model spiralian mollusc Crepidula , 2015, Developmental dynamics : an official publication of the American Association of Anatomists.
[2] A. Hejnol,et al. Getting to the bottom of anal evolution , 2015 .
[3] R. Janssen,et al. Fate and nature of the onychophoran mouth–anus furrow and its contribution to the blastopore , 2015, Proceedings of the Royal Society B: Biological Sciences.
[4] M. Boyle,et al. Molecular conservation of metazoan gut formation: evidence from expression of endomesoderm genes in Capitella teleta (Annelida) , 2014, EvoDevo.
[5] Xin Yi Chan,et al. Development of blastomere clones in the Ilyanassa embryo: transformation of the spiralian blastula into the larval body plan , 2014, Development Genes and Evolution.
[6] D. McClay,et al. Sub-circuits of a gene regulatory network control a developmental epithelial-mesenchymal transition , 2014, Development.
[7] J. Henry. Spiralian model systems. , 2014, The International journal of developmental biology.
[8] J. Henry,et al. Ins and outs of Spiralian gastrulation. , 2014, The International journal of developmental biology.
[9] L. Nagy,et al. Analysis of ciliary band formation in the mollusc Ilyanassa obsoleta , 2013, Development Genes and Evolution.
[10] C. Arenas-Mena. Brachyury, Tbx2/3 and sall expression during embryogenesis of the indirectly developing polychaete Hydroides elegans. , 2013, The International journal of developmental biology.
[11] M. Martindale. Evolution of Development: The Details Are in the Entrails , 2013, Current Biology.
[12] R. Janssen,et al. Deuterostomic Development in the Protostome Priapulus caudatus , 2012, Current Biology.
[13] G. von Dassow,et al. A non-feeding pilidium with apparent prototroch and telotroch. , 2012, Journal of experimental zoology. Part B, Molecular and developmental evolution.
[14] J. Henry,et al. Cleavage pattern and fate map of the mesentoblast, 4d, in the gastropod Crepidula: a hallmark of spiralian development , 2012, EvoDevo.
[15] C. Nielsen. How to make a protostome , 2012, Invertebrate Systematics.
[16] K. Tagawa,et al. How was the notochord born? , 2012, Evolution & development.
[17] Xin Yi Chan,et al. Patterning a spiralian embryo: a segregated RNA for a Tis11 ortholog is required in the 3a and 3b cells of the Ilyanassa embryo. , 2011, Developmental biology.
[18] M. Boyle,et al. Somatic and germline expression of piwi during development and regeneration in the marine polychaete annelid Capitella teleta , 2011, EvoDevo.
[19] M. Martindale,et al. β-catenin and early development in the gastropod, Crepidula fornicata. , 2010, Integrative and comparative biology.
[20] A. Hejnol. A twist in time--the evolution of spiral cleavage in the light of animal phylogeny. , 2010, Integrative and comparative biology.
[21] E. Seaver,et al. Cell lineage and fate map of the primary somatoblast of the polychaete annelid Capitella teleta. , 2010, Integrative and comparative biology.
[22] M. Martindale,et al. A comprehensive fate map by intracellular injection of identified blastomeres in the marine polychaete Capitella teleta , 2010, EvoDevo.
[23] R. Collin,et al. The Slipper Snail, Crepidula: An Emerging Lophotrochozoan Model System , 2010, The Biological Bulletin.
[24] C. Arenas-Mena. Indirect development, transdifferentiation and the macroregulatory evolution of metazoans , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[25] K. Rawlinson. Embryonic and post-embryonic development of the polyclad flatworm Maritigrella crozieri; implications for the evolution of spiralian life history traits , 2010, Frontiers in Zoology.
[26] G. von Dassow,et al. Unusual Development of the Mitraria Larva in the Polychaete Owenia collaris , 2009, The Biological Bulletin.
[27] M. Martindale,et al. A developmental perspective: changes in the position of the blastopore during bilaterian evolution. , 2009, Developmental cell.
[28] M. Martindale,et al. The mouth, the anus, and the blastopore—open questions about questionable openings , 2009 .
[29] Ann L. Miller,et al. Regulation of cytokinesis by Rho GTPase flux , 2008, Nature Cell Biology.
[30] M. Martindale,et al. Acoel development indicates the independent evolution of the bilaterian mouth and anus , 2008, Nature.
[31] David Q. Matus,et al. Broad phylogenomic sampling improves resolution of the animal tree of life , 2008, Nature.
[32] J. D. Lambert,et al. Mesoderm in spiralians: the organizer and the 4d cell. , 2008, Journal of experimental zoology. Part B, Molecular and developmental evolution.
[33] D. McClay,et al. Ingression of primary mesenchyme cells of the sea urchin embryo: a precisely timed epithelial mesenchymal transition. , 2007, Birth defects research. Part C, Embryo today : reviews.
[34] M. Martindale,et al. Homology of ciliary bands in Spiralian Trochophores. , 2007, Integrative and comparative biology.
[35] William M Bement,et al. Versatile fluorescent probes for actin filaments based on the actin-binding domain of utrophin. , 2007, Cell motility and the cytoskeleton.
[36] Xin Yi Chan,et al. Widespread RNA segregation in a spiralian embryo , 2007, Evolution & development.
[37] M. Martindale,et al. High-resolution fate map of the snail Crepidula fornicata: the origins of ciliary bands, nervous system, and muscular elements. , 2007, Developmental biology.
[38] D. Arendt,et al. Polychaete trunk neuroectoderm converges and extends by mediolateral cell intercalation , 2007, Proceedings of the National Academy of Sciences.
[39] M. Martindale,et al. Cell specification and the role of the polar lobe in the gastropod mollusc Crepidula fornicata. , 2006, Developmental biology.
[40] B. Swalla,et al. Nodal signaling and the evolution of deuterostome gastrulation , 2005, Developmental dynamics : an official publication of the American Association of Anatomists.
[41] R. Woltereck. Beiträge zur praktischen Analyse der Polygordius-Entwicklung nach dem »Nordsee-« und dem »Mittelmeertypus« , 1904, Archiv für Entwicklungsmechanik der Organismen.
[42] C. D.. The early development of Arenicola and Sternaspis , 2005, Archiv für Entwicklungsmechanik der Organismen.
[43] C. Nielsen. Trochophora larvae: cell-lineages, ciliary bands, and body regions. 1. Annelida and Mollusca. , 2004, Journal of experimental zoology. Part B, Molecular and developmental evolution.
[44] C. Stern. Gastrulation : from cells to embryo , 2004 .
[45] U. Technau,et al. Origin and evolution of endoderm and mesoderm. , 2003, The International journal of developmental biology.
[46] N. Lartillot,et al. The expression of a caudal homologue in a mollusc, Patella vulgata. , 2003, Gene expression patterns : GEP.
[47] A. Nederbragt,et al. A lophotrochozoan twist gene is expressed in the ectomesoderm of the gastropod mollusk Patella vulgata , 2002, Evolution & development.
[48] N. Lartillot,et al. Expression pattern of Brachyury in the mollusc Patella vulgata suggests a conserved role in the establishment of the AP axis in Bilateria. , 2002, Development.
[49] J. V. D. Biggelaar,et al. The improbability of dorso-ventral axis inversion during animal evolution, as presumed by Geoffroy Saint Hilaire , 2002 .
[50] U. Technau. Brachyury, the blastopore and the evolution of the mesoderm , 2001, BioEssays : news and reviews in molecular, cellular and developmental biology.
[51] D. Arendt,et al. Evolution of the bilaterian larval foregut , 2001, Nature.
[52] V. Hartenstein,et al. The embryonic development of the polyclad flatworm Imogine mcgrathi , 2000, Development Genes and Evolution.
[53] G. Rouse. Trochophore concepts: ciliary bands and the evolution of larvae in spiralian Metazoa , 1999 .
[54] M. Martindale,et al. The cell lineage of a polyclad turbellarian embryo reveals close similarity to coelomate spiralians. , 1998, Developmental biology.
[55] M. Martindale,et al. Conservation of the spiralian developmental program: cell lineage of the nemertean, Cerebratulus lacteus. , 1998, Developmental biology.
[56] W. Dictus,et al. Cell-lineage and clonal-contribution map of the trochophore larva of Patella vulgata (Mollusca) 1 Both authors contributed equally to this work. 1 , 1997, Mechanisms of Development.
[57] D. Arendt,et al. Dorsal or ventral: Similarities in fate maps and gastrulation patterns in annelids, arthropods and chrodates , 1997, Mechanisms of Development.
[58] M. Martindale,et al. Dual origins of mesoderm in a basal spiralian: cell lineage analyses in the polyclad turbellarian Hoploplana inquilina. , 1996, Developmental biology.
[59] D. Weisblat,et al. Cellular mechanisms of epiboly in leech embryos. , 1996, Development.
[60] M. Martindale,et al. Modifications of cell fate specification in equal-cleaving nemertean embryos: alternate patterns of spiralian development. , 1995, Development.
[61] J. Lake,et al. Evidence from 18S ribosomal DNA that the lophophorates are protostome animals , 1995, Science.
[62] R. R. Strathmann. Hypotheses on the Origins of Marine Larvae , 1993 .
[63] C. Nielsen. Structure and Function of Metazoan Ciliary Bands and Their Phylogenetic Significance , 1987 .
[64] C. Nielsen. Animal phylogeny in the light of the trochaea theory , 1985 .
[65] A. H. Clark,et al. Animal evolution , 1981 .
[66] F. H. Gravely. Studies on Polychæ Larvæ , 1909 .
[67] A. Wierzejski. Embryologie von Physa fontinalis L. , 1905 .
[68] A. L. Treadwell. The cytogeny of Podarke obscura Verrill , 1901 .
[69] A. D. Mead. The early development of marine annelids , 1897 .
[70] E. Conklin. The embryology of crepidula, A contribution to the cell lineage and early development of some marine gasteropods , 1897 .
[71] E. Conklin. The embryology of Crepidula , 1897 .