about
Floral morphogenesis: stochastic explorations of a gene network epigenetic landscapeFlower developmentDistributed robustness in cellular networks: insights from synthetic evolved circuitsNeutrality and robustness in evo-devo: emergence of lateral inhibitionBioinformatic tools for inferring functional information from plant microarray data II: Analysis beyond single gene.Systems biology of organ initiation at the shoot apex.Network component analysis provides quantitative insights on an Arabidopsis transcription factor-gene regulatory networkReshaping the epigenetic landscape during early flower development: induction of attractor transitions by relative differences in gene decay rates.A dynamic genetic-hormonal regulatory network model explains multiple cellular behaviors of the root apical meristem of Arabidopsis thaliana.Target genes of the MADS transcription factor SEPALLATA3: integration of developmental and hormonal pathways in the Arabidopsis flowerInformation flow during gene activation by signaling molecules: ethylene transduction in Arabidopsis cells as a study system.From gene expression to gene regulatory networks in Arabidopsis thaliana.Comparison of evolutionary algorithms in gene regulatory network model inference.Single-cell and coupled GRN models of cell patterning in the Arabidopsis thaliana root stem cell niche.The Role of SHI/STY/SRS Genes in Organ Growth and Carpel Development Is Conserved in the Distant Eudicot Species Arabidopsis thaliana and Nicotiana benthamianaComputational morphodynamics: a modeling framework to understand plant growth.A gene regulatory network model for floral transition of the shoot apex in maize and its dynamic modeling.A model comparison study of the flowering time regulatory network in ArabidopsisEvolutionary Developmental Biology (Evo-Devo) Research in Latin America.Using genomics to understand intestinal biology.Discovery of a kernel for controlling biomolecular regulatory networksTetramer formation in Arabidopsis MADS domain proteins: analysis of a protein-protein interaction network.Plant systems biology: network matters.A complex systems approach to Arabidopsis root stem-cell niche developmental mechanisms: from molecules, to networks, to morphogenesis.Specification of floral organs in Arabidopsis.Boolean Dynamic Modeling Approaches to Study Plant Gene Regulatory Networks: Integration, Validation, and Prediction.Finding Missing Interactions of the Arabidopsis thaliana Root Stem Cell Niche Gene Regulatory Network.High-Resolution Vertical Observation of Intracellular Structure Using Magnetically Responsive Microplates.Integrating two patterning processes in the flowerDynamic network-based epistasis analysis: boolean examples.Robustness in regulatory interaction networks. A generic approach with applications at different levels: physiologic, metabolic and genetic.An interdisciplinary view on dynamic models for plant genetics and morphogenesis: scope, examples and emerging research avenues.Dynamic network modelling to understand flowering transition and floral patterning.Network inference using asynchronously updated kinetic Ising model.Epidermal patterning in Arabidopsis: models make a difference.Dynamical Patterning Modules, Biogeneric Materials, and the Evolution of Multicellular Plants
P2860
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P2860
description
2006 nî lūn-bûn
@nan
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
2006年论文
@zh
2006年论文
@zh-cn
name
Gene regulatory network models for plant development.
@ast
Gene regulatory network models for plant development.
@en
type
label
Gene regulatory network models for plant development.
@ast
Gene regulatory network models for plant development.
@en
prefLabel
Gene regulatory network models for plant development.
@ast
Gene regulatory network models for plant development.
@en
P2093
P1476
Gene regulatory network models for plant development.
@en
P2093
Alvaro Chaos
Carlos Espinosa-Soto
Elena R Alvarez-Buylla
Enrique Balleza Dávila
Mariana Benítez
Pablo Padilla-Longoria
P356
10.1016/J.PBI.2006.11.008
P577
2006-12-04T00:00:00Z