24 – Epigenetic Mechanisms of Character Origination
暂无分享,去创建一个
[1] J. Tyson,et al. A cellular automation model of excitable media including curvature and dispersion. , 1990, Science.
[2] M. Wills,et al. Morphological disparity in the cambrian. , 1992, Science.
[3] H. Nakayama,et al. A DNA-binding protein from Candida albicans that binds to the RPG box of Saccharomyces cerevisiae and the telomeric repeat sequence of C. albicans. , 1997, Microbiology.
[4] L. Sokoloff,et al. The role of movement in embryonic joint development , 1966 .
[5] S. Morris. The fossil record and the early evolution of the Metazoa , 1993, Nature.
[6] S A Newman,et al. Lineage and pattern in the developing vertebrate limb. , 1988, Trends in genetics : TIG.
[7] J. Bonner. The origins of multicellularity , 1998 .
[8] G. Morata,et al. Developmental compartmentalization in the dorsal mesothoracic disc of Drosophila. , 1976, Developmental biology.
[9] S. Carroll,et al. Fossils, genes and the evolution of animal limbs , 1997, Nature.
[10] A. Knoll,et al. The early evolution of eukaryotes: a geological perspective. , 1992, Science.
[11] M. Takeichi,et al. Experimental specification of cell sorting, tissue spreading, and specific spatial patterning by quantitative differences in cadherin expression. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[12] D. Michie,et al. An Effect of the Uterine Environment upon Skeletal Morphology in the Mouse , 1958, Nature.
[13] Joe C. Campbell,et al. Developmental Constraints and Evolution: A Perspective from the Mountain Lake Conference on Development and Evolution , 1985, The Quarterly Review of Biology.
[14] A. Seilacher. Vendobionta and Psammocorallia: lost constructions of Precambrian evolution , 1992, Journal of the Geological Society.
[15] Pfluger,et al. Triploblastic animals more than 1 billion years ago: trace fossil evidence from india , 1998, Science.
[16] G. Wagner. The biological role of homologues: A building block hypothesis , 1995 .
[17] S A Newman,et al. Sticky fingers: Hox genes and cell adhesion in vertebrate limb development. , 1996, BioEssays : news and reviews in molecular, cellular and developmental biology.
[18] A. Johnson,et al. Control of filament formation in Candida albicans by the transcriptional repressor TUP1. , 1997, Science.
[19] H. Iba,et al. Misexpression of Hoxa-13 induces cartilage homeotic transformation and changes cell adhesiveness in chick limb buds. , 1995, Genes & development.
[20] Natural and experimental reduction of the avian fibula: Developmental thresholds and evolutionary constraint , 1992, Journal of morphology.
[21] G S Beaupré,et al. Cellular shape and pressure may mediate mechanical control of tissue composition in tendons , 1993, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[22] Albert K. Harris,et al. Fibroblast traction as a mechanism for collagen morphogenesis , 1981, Nature.
[23] R. Raff,et al. Developmental genetics and traditional homology. , 1996, BioEssays : news and reviews in molecular, cellular and developmental biology.
[24] C. Nüsslein-Volhard. Gradients that organize embryo development. , 1996, Scientific American.
[25] A. Meyer,et al. Monophyletic origin of Lake Victoria cichlid fishes suggested by mitochondrial DNA sequences , 1990, Nature.
[26] D R Carter,et al. Skeletal development and bone functional adaptation , 1992, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[27] Traction and the formation of mesenchymal condensations in vivo. , 1990, BioEssays : news and reviews in molecular, cellular and developmental biology.
[28] D. Tautz,et al. Redundancies, development and the flow of information. , 1992, BioEssays : news and reviews in molecular, cellular and developmental biology.
[29] E. G. Drucker,et al. Pharyngeal biting mechanics in centrarchild and cichlid fishes: insights into a key evolutionary innovation , 1996 .
[30] T. Koob,et al. Structural specialization in tendons under compression. , 1989, International review of cytology.
[31] Stuart A. Newman,et al. Role of transforming growth factor-β in chondrogenic pattern formation in the embryonic limb: Stimulation of mesenchymal condensation and fibronectin gene expression by exogenenous TGF-β and evidence for endogenous TGF-β-like activity , 1991 .
[32] N. Wingreen,et al. Emergence of Preferred Structures in a Simple Model of Protein Folding , 1996, Science.
[33] M. Kashimata,et al. Contemporary approaches to the study of salivary gland morphogenesis. , 1996, European journal of morphology.
[34] S. Morris. Burgess Shale Faunas and the Cambrian Explosion , 1989, Science.
[35] C. Chothia. One thousand families for the molecular biologist , 1992, Nature.
[36] G. V. Vande Woude,et al. The met proto-oncogene receptor and lumen formation. , 1992, Science.
[37] E H Burger,et al. Mechanical loading stimulates the release of transforming growth factor‐β activity by cultured mouse calvariae and periosteal cells , 1995, Journal of cellular physiology.
[38] A. T. Winfree,et al. Persistent tangled vortex rings in generic excitable media , 1994, Nature.
[39] J. Cooke,et al. Evolutionary origins and maintenance of redundant gene expression during metazoan development. , 1997, Trends in genetics : TIG.
[40] K. Shiota,et al. TGFβ2 acts as an “Activator” molecule in reaction‐diffusion model and is involved in cell sorting phenomenon in mouse limb micromass culture , 2000, Developmental dynamics : an official publication of the American Association of Anatomists.
[41] S. Newman,et al. Generic physical mechanisms of tissue morphogenesis: A common basis for development and evolution , 1994 .
[42] S. Evanko,et al. Mechanical loading and TGF-beta regulate proteoglycan synthesis in tendon. , 1997, Archives of biochemistry and biophysics.
[43] M. Levine,et al. Transcriptional regulation of a pair-rule stripe in Drosophila. , 1991, Genes & development.
[44] G. Wagner. The Biological Homology Concept , 1989 .
[45] O. Pourquié,et al. Avian hairy Gene Expression Identifies a Molecular Clock Linked to Vertebrate Segmentation and Somitogenesis , 1997, Cell.
[46] Martin A. Nowak,et al. Evolution of genetic redundancy , 1997, Nature.
[47] J. Scott,et al. The effect of muscle paralysis on the radial growth of collagen fibrils in developing tendon. , 1987, Clinical science.
[48] K. Shiota,et al. Extracellular matrix environment influences chondrogenic pattern formation in limb bud micromass culture: Experimental verification of theoretical models , 2000, The Anatomical record.
[49] T. Johnston,et al. Neophenogenesis: a developmental theory of phenotypic evolution. , 1990, Journal of theoretical biology.
[50] H. F. Nijhout,et al. Metaphors and the role of genes in development. , 1990, BioEssays : news and reviews in molecular, cellular and developmental biology.
[51] O. Pourquié. Clocks regulating developmental processes , 1998, Current Opinion in Neurobiology.
[52] F. Crick,et al. Compartments and polyclones in insect development. , 1975, Science.
[53] F. B. Pickett,et al. Seeing double: appreciating genetic redundancy. , 1995, The Plant cell.
[54] G. Wagner,et al. NOVELTY IN EVOLUTION: RESTRUCTURING THE CONCEPT , 1991 .
[55] A. Wilkins,et al. Canalization: a molecular genetic perspective. , 1997, BioEssays : news and reviews in molecular, cellular and developmental biology.
[56] B. Hall,et al. DEVELOPMENTAL MECHANISMS UNDERLYING THE FORMATION OF ATAVISMS , 1984 .
[57] S. Lindquist,et al. Hsp90 as a capacitor for morphological evolution , 1998, Nature.
[58] M. Takeichi,et al. Cadherin cell adhesion receptors as a morphogenetic regulator. , 1991, Science.
[59] C F Starmer,et al. Vulnerability in an excitable medium: analytical and numerical studies of initiating unidirectional propagation. , 1993, Biophysical journal.
[60] M. Ferguson,et al. Environmental regulation of sex determination in reptiles. , 1988, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[61] D. Wake. Homoplasy: The Result of Natural Selection, or Evidence of Design Limitations? , 1991, The American Naturalist.
[62] A. Turing. The chemical basis of morphogenesis , 1952, Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences.
[63] Stuart A. Newman,et al. Problems and paradigms: Is segmentation generic? , 1993 .
[64] A. Meyer,et al. Genetic divergence, speciation and morphological stasis in a lineage of African cichlid fishes , 1992, Nature.
[65] Tom Maniatis,et al. Early and late periodic patterns of even skipped expression are controlled by distinct regulatory elements that respond to different spatial cues , 1989, Cell.
[66] G. Müller. Ancestral patterns in bird limb development: A new look at Hampé's experiment , 1989 .
[67] H L Frisch,et al. Dynamics of skeletal pattern formation in developing chick limb. , 1979, Science.
[68] Which Came First, the Hypha or the Yeast? , 1997, Science.
[69] P. Saunders,et al. Beyond neo-Darwinism--an epigenetic approach to evolution. , 1979, Journal of theoretical biology.
[70] L Wolpert,et al. Cell sorting and chondrogenic aggregate formation in micromass culture. , 1987, Developmental biology.