Global Topological Order Emerges through Local Mechanical Control of Cell Divisions in the Arabidopsis Shoot Apical Meristem
暂无分享,去创建一个
G. Bassel | Matthew D B Jackson | Salva Duran-Nebreda | Daniel Kierzkowski | S. Strauss | Hao Xu | Benoit Landrein | O. Hamant | Richard S. Smith | I. Johnston | Salva Duran-Nebreda | Matthew D. B. Jackson | Benoît Landrein | D. Kierzkowski
[1] George W Bassel,et al. Information Processing and Distributed Computation in Plant Organs. , 2018, Trends in plant science.
[2] Adam Runions,et al. Why plants make puzzle cells, and how their shape emerges , 2018, eLife.
[3] Andrew Zalesky,et al. Navigation of brain networks , 2018, Proceedings of the National Academy of Sciences.
[4] O. Hamant,et al. Phyllotactic regularity requires the Paf1 complex in Arabidopsis , 2017, Development.
[5] Olivier Hamant,et al. Mechanochemical Polarization of Contiguous Cell Walls Shapes Plant Pavement Cells. , 2017, Developmental cell.
[6] G. Bassel,et al. Network-based approaches to quantify multicellular development , 2017, Journal of The Royal Society Interface.
[7] G. Bassel,et al. Topological analysis of multicellular complexity in the plant hypocotyl , 2017, eLife.
[8] W. Dewitte,et al. Cell-size dependent progression of the cell cycle creates homeostasis and flexibility of plant cell size , 2017, Nature Communications.
[9] D. Bouchez,et al. The preprophase band of microtubules controls the robustness of division orientation in plants , 2017, Science.
[10] Andy R. Terrel,et al. SymPy: Symbolic computing in Python , 2017, PeerJ Prepr..
[11] K. C. Huang,et al. Cell size and growth regulation in the Arabidopsis thaliana apical stem cell niche , 2016, Proceedings of the National Academy of Sciences.
[12] R. Sablowski. Coordination of plant cell growth and division: collective control or mutual agreement? , 2016, Current opinion in plant biology.
[13] J. Elf,et al. The Synchronization of Replication and Division Cycles in Individual E. coli Cells , 2016, Cell.
[14] O. Hamant,et al. Cell division plane orientation based on tensile stress in Arabidopsis thaliana , 2016, Proceedings of the National Academy of Sciences.
[15] Elliot M. Meyerowitz,et al. Regulation of Meristem Morphogenesis by Cell Wall Synthases in Arabidopsis , 2016, Current Biology.
[16] R. Solé,et al. A morphospace for synthetic organs and organoids: the possible and the actual. , 2016, Integrative biology : quantitative biosciences from nano to macro.
[17] Yanlan Mao,et al. Fundamental physical cellular constraints drive self‐organization of tissues , 2016, The EMBO journal.
[18] P. Koumoutsakos,et al. MorphoGraphX: A platform for quantifying morphogenesis in 4D , 2015, eLife.
[19] G. Bassel,et al. Digital Single-Cell Analysis of Plant Organ Development Using 3DCellAtlas[OPEN] , 2015, Plant Cell.
[20] E. Mjolsness,et al. Analysis of cell division patterns in the Arabidopsis shoot apical meristem , 2015, Proceedings of the National Academy of Sciences.
[21] Jacques Dumais,et al. Stochasticity in the symmetric division of plant cells: when the exceptions are the rule , 2014, Front. Plant Sci..
[22] G. Bassel,et al. Mechanical constraints imposed by 3D cellular geometry and arrangement modulate growth patterns in the Arabidopsis embryo , 2014, Proceedings of the National Academy of Sciences.
[23] P. Prusinkiewicz,et al. Genetic control of plant development by overriding a geometric division rule. , 2014, Developmental cell.
[24] Arun Sampathkumar,et al. Subcellular and supracellular mechanical stress prescribes cytoskeleton behavior in Arabidopsis cotyledon pavement cells , 2014, eLife.
[25] Marc Barthelemy,et al. Spatial Networks , 2010, Encyclopedia of Social Network Analysis and Mining.
[26] M. Hoffmann,et al. Division in Escherichia coli is triggered by a size-sensing rather than a timing mechanism , 2014, BMC Biology.
[27] Martin Bringmann,et al. Impaired Cellulose Synthase Guidance Leads to Stem Torsion and Twists Phyllotactic Patterns in Arabidopsis , 2013, Current Biology.
[28] Yoshiki Sasai,et al. Cytosystems dynamics in self-organization of tissue architecture , 2013, Nature.
[29] J. Skotheim,et al. Cell Size Control in Yeast , 2012, Current Biology.
[30] Benoit Landrein,et al. Mechanical Stress Acts via Katanin to Amplify Differences in Growth Rate between Adjacent Cells in Arabidopsis , 2012, Cell.
[31] E. Bayer,et al. Elastic Domains Regulate Growth and Organogenesis in the Plant Shoot Apical Meristem , 2012, Science.
[32] J. Dumais,et al. Universal rule for the symmetric division of plant cells , 2011, Proceedings of the National Academy of Sciences.
[33] Radhika Nagpal,et al. Control of the Mitotic Cleavage Plane by Local Epithelial Topology , 2011, Cell.
[34] Ian C. Marschner,et al. glm2: Fitting Generalized Linear Models with Convergence Problems , 2011, R J..
[35] Sanford Weisberg,et al. An R Companion to Applied Regression , 2010 .
[36] Patrik Sahlin,et al. A Modeling Study on How Cell Division Affects Properties of Epithelial Tissues Under Isotropic Growth , 2010, PloS one.
[37] G. Malandain,et al. Imaging plant growth in 4D: robust tissue reconstruction and lineaging at cell resolution , 2010, Nature Methods.
[38] Mark Newman,et al. Networks: An Introduction , 2010 .
[39] O. Sporns,et al. Complex brain networks: graph theoretical analysis of structural and functional systems , 2009, Nature Reviews Neuroscience.
[40] Przemyslaw Prusinkiewicz,et al. Integration of transport-based models for phyllotaxis and midvein formation. , 2009, Genes & development.
[41] M. Gibson,et al. Cell topology, geometry, and morphogenesis in proliferating epithelia. , 2009, Current topics in developmental biology.
[42] Y. Couder,et al. Developmental Patterning by Mechanical Signals in Arabidopsis , 2009 .
[43] Christophe Godin,et al. Flux-Based Transport Enhancement as a Plausible Unifying Mechanism for Auxin Transport in Meristem Development , 2008, PLoS Comput. Biol..
[44] Aric Hagberg,et al. Exploring Network Structure, Dynamics, and Function using NetworkX , 2008, Proceedings of the Python in Science Conference.
[45] Dirk Inzé,et al. Cell cycle regulation in plant development. , 2006, Annual review of genetics.
[46] N. Perrimon,et al. The emergence of geometric order in proliferating metazoan epithelia , 2006, Nature.
[47] D. Kwiatkowska. Flower primordium formation at the Arabidopsis shoot apex: quantitative analysis of surface geometry and growth. , 2006, Journal of experimental botany.
[48] P. Prusinkiewicz,et al. A plausible model of phyllotaxis , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[49] Pierre Barbier de Reuille,et al. Computer simulations reveal novel properties of the cell-cell signaling network at the shoot apex in /Arabidopsis , 2005 .
[50] E. Mjolsness,et al. An auxin-driven polarized transport model for phyllotaxis , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[51] E. Meyerowitz,et al. Patterns of Auxin Transport and Gene Expression during Primordium Development Revealed by Live Imaging of the Arabidopsis Inflorescence Meristem , 2005, Current Biology.
[52] Thomas Lengauer,et al. ROCR: visualizing classifier performance in R , 2005, Bioinform..
[53] Qiang Du,et al. Anisotropic Centroidal Voronoi Tessellations and Their Applications , 2005, SIAM J. Sci. Comput..
[54] M. Newman. Power laws, Pareto distributions and Zipf's law , 2005 .
[55] M. Newman. A measure of betweenness centrality based on random walks , 2003, Soc. Networks.
[56] D. Kwiatkowska. Structural integration at the shoot apical meristem: models, measurements, and experiments. , 2004, American journal of botany.
[57] E. Meyerowitz,et al. Real-time lineage analysis reveals oriented cell divisions associated with morphogenesis at the shoot apex of Arabidopsis thaliana , 2004, Development.
[58] P. Prusinkiewicz,et al. The genetics of geometry. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[59] R. Simon,et al. The ethanol switch: a tool for tissue-specific gene induction during plant development. , 2003, The Plant journal : for cell and molecular biology.
[60] J. Dumais,et al. Analysis of surface growth in shoot apices. , 2002, The Plant journal : for cell and molecular biology.
[61] Sam Kiley. Probability Distributions Involving Gaussian Random Variables: A Handbook for Engineers and Scientists , 2002 .
[62] M. Simon. Probability distributions involving Gaussian random variables : a handbook for engineers and scientists , 2002 .
[63] U. Brandes. A faster algorithm for betweenness centrality , 2001 .
[64] Eric Jones,et al. SciPy: Open Source Scientific Tools for Python , 2001 .
[65] S. Turner,et al. BOTERO1 is required for normal orientation of cortical microtubules and anisotropic cell expansion in Arabidopsis. , 2001, The Plant journal : for cell and molecular biology.
[66] Geert-Jan Giezeman,et al. On the design of CGAL a computational geometry algorithms library , 2000, Softw. Pract. Exp..
[67] R. Huntley,et al. The plant cell cycle. , 1999, Current opinion in plant biology.
[68] K. Kiêu,et al. Cellular Parameters of the Shoot Apical Meristem in Arabidopsis , 1998, Plant Cell.
[69] E. Meyerowitz,et al. Genetic Control of Cell Division Patterns in Developing Plants , 1997, Cell.
[70] P. Benfey,et al. The SCARECROW Gene Regulates an Asymmetric Cell Division That Is Essential for Generating the Radial Organization of the Arabidopsis Root , 1996, Cell.
[71] W. J. Lucas,et al. Selective Trafficking of KNOTTED1 Homeodomain Protein and Its mRNA Through Plasmodesmata , 1995, Science.
[72] P. Lintilhac,et al. Stress-induced alignment of division plane in plant tissues grown in vitro , 1984, Nature.
[73] S. S. Vallender. Calculation of the Wasserstein Distance Between Probability Distributions on the Line , 1974 .
[74] M Lappé,et al. Genetic control. , 1972, The New England journal of medicine.
[75] D'arcy W. Thompson,et al. On Growth and Form , 1917, Nature.
[76] Leo Errera,et al. Sur une condition fondamentale d'équilibre des cellules vivantes , 1886 .