Search results for "morphogenesis"

showing 10 items of 178 documents

FlyMove – a new way to look at development of Drosophila

2003

Development of any organism requires a complex interplay of genes to orchestrate the many movements needed to build up an embryo. Previously, work on Drosophila melanogaster has provided important insights that are often applicable in other systems. But developmental processes, which take place in space and time, are difficult to convey in textbooks. Here, we introduce FlyMove (http://flymove.uni-muenster.de), a new database combining movies, animated schemata, interactive "modules" and pictures that will greatly facilitate the understanding of Drosophila development.

Cognitive scienceanimal structuresDatabases FactualbiologyComputational BiologyGenes Insectbiology.organism_classificationBioinformaticsDrosophila melanogasterComputingMethodologies_PATTERNRECOGNITIONDevelopment (topology)Gene Expression RegulationMorphogenesisGeneticsAnimalsComputer SimulationFemaleDrosophila melanogasterDrosophilaOrganismTrends in Genetics
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Spontaneous Spatiotemporal Ordering of Shape Oscillations Enhances Cell Migration

2019

The migration of cells is relevant for processes such as morphogenesis, wound healing, and invasion of cancer cells. In order to move, single cells deform cyclically. However, it is not understood how these shape oscillations influence collective properties. Here we demonstrate, using numerical simulations, that the interplay of directed motion, shape oscillations, and excluded volume enables cells to locally "synchronize" their motion and thus enhance collective migration. Our model captures elongation and contraction of crawling ameboid cells controlled by an internal clock with a fixed period, mimicking the internal cycle of biological cells. We show that shape oscillations are crucial f…

Collective behaviorCell divisionMorphogenesisFOS: Physical sciences02 engineering and technologyCondensed Matter - Soft Condensed Matter010402 general chemistryModels Biological01 natural sciencesSpatio-Temporal AnalysisCell MovementPhysics - Biological PhysicsCell ShapePhysicsDynamics (mechanics)Cell migrationChemotaxisGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesOrder (biology)Biological Physics (physics.bio-ph)Cancer cellBiophysicsSoft Condensed Matter (cond-mat.soft)0210 nano-technology
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Isolation and characterization of a cDNA encoding a potential morphogen from the marine sponge Geodia cydonium that is conserved in higher metazoans.

1998

Species belonging to the lowest metazoan phylum, the sponges (Porifera), exhibit a surprisingly complex and multifaceted Bauplan (body plan). Recently, key molecules have been isolated from sponges which demonstrate that the cells of these animals are provided with characteristic metazoan adhesion and signal transduction molecules, allowing tissue formation. In order to understand which factors control the spatial organization of these cells in the sponge body plan, we screened for a cDNA encoding a soluble modulator of the behaviour of endothelial cells. A cDNA encoding a putative protein, which is highly similar to the human and mouse endothelial monocyte-activating polypeptide (EMAP) II …

DNA ComplementaryMolecular Sequence DataSequence alignmentGeneral Biochemistry Genetics and Molecular BiologyConserved sequenceMiceComplementary DNAMorphogenesisAnimalsHumansAmino Acid SequencePeptide sequenceCaenorhabditis elegansConserved SequencePhylogenyGeneral Environmental ScienceGeneral Immunology and MicrobiologybiologyProteinsRNA-Binding ProteinsGeneral Medicinebiology.organism_classificationMolecular biologyNeoplasm ProteinsPoriferaSpongeOpen reading frameBiochemistryCosmidCytokinesGeneral Agricultural and Biological SciencesSequence AlignmentResearch ArticleProceedings. Biological sciences
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Assembly of the Major and the Minor Capsid Protein of Human Papillomavirus Type 33 into Virus-like Particles and Tubular Structures in Insect Cells

1994

Native virions of human papillomaviruses (HPV) can be isolated from genital lesions only in very limited amounts. Recent studies have shown that virus-like particles can be obtained by expression of the capsid proteins using vaccinia virus recombinants or the baculovirus system. We now present the first detailed characterization of virus-like particles of a human papillomavirus associated with malignant genital lesions, HPV-33, produced in high yield using the baculovirus expression system. Assembly of the major capsid protein L1 alone or together with the minor capsid protein L2 has been obtained. Both spherical virus-like particles of 50-60 nm diameter and tubular structures of either 25-…

Density gradientIcosahedral symmetryvirusesImmunoelectron microscopyMolecular Sequence DataMothsBiologyNegative StainingViruschemistry.chemical_compoundCapsidVirus-like particleVirologyMorphogenesisAnimalsDisulfidesPapillomaviridaeCells CulturedBase SequenceMolecular biologyNucleopolyhedrovirusesRecombinant ProteinsMicroscopy ElectronchemistryCapsidCell cultureVacciniaVirology
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How Hox genes can shed light on the place of echinoderms among the deuterostomes.

2014

19 pages; International audience; BACKGROUND: The Hox gene cluster ranks among the greatest of biological discoveries of the past 30 years. Morphogenetic patterning genes are remarkable for the systems they regulate during major ontogenetic events, and for their expressions of molecular, temporal, and spatial colinearity. Recent descriptions of exceptions to these colinearities are suggesting deep phylogenetic signal that can be used to explore origins of entire deuterostome phyla. Among the most enigmatic of these deuterostomes in terms of unique body patterning are the echinoderms. However, there remains no overall synthesis of the correlation between this signal and the variations observ…

DeuterostomeBody PatterningPhylumEvolutionResearch[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]Inversion (evolutionary biology)[SDV.BDD.MOR]Life Sciences [q-bio]/Development Biology/MorphogenesisBiologyDevelopmentbiology.organism_classificationDeuterostomia[ SDV.BDD.MOR ] Life Sciences [q-bio]/Development Biology/MorphogenesisHox genes[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]EchinodermPhylogeneticsEvolutionary biologyGeneticsHox geneDevelopmental biologyEcology Evolution Behavior and SystematicsA/P axisDevelopmental BiologyEchinodermata
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Environmental and ontogenetic constraints on developmental stability in the spatangoid sea urchin Echinocardium (Echinoidea).

2006

13 pages; International audience; Spatangoid irregular sea urchins are detritivorous benthic organisms particularly prone to variations of environment, and their mode of growth and plate morphology make them an appropriate model to assess the effects of environmental variations. Two populations of Echinocardium flavescens were sampled in two sites of the Norwegian coast characterized by contrasted environmental conditions. Different morphological descriptors (plate areas, interlandmarks distances, overall size, and shape of the posterior ambulacra) were used to appraise interindividual variations, and fluctuating asymmetry. The comparisons were carried out using classical fluctuating asymme…

Developmental instabilitymorphological variationsfluctuating asymmetrysea urchins[SDV.BDD.MOR]Life Sciences [q-bio]/Development Biology/Morphogenesisgeometric morphometrics[ SDV.BDD.MOR ] Life Sciences [q-bio]/Development Biology/Morphogenesis[SDV.BDD.MOR] Life Sciences [q-bio]/Development Biology/Morphogenesis
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Siliceous spicules in marine demosponges (example Suberites domuncula)

2005

All metazoan animals comprise a body plan of different complexity. Since-especially based on molecular and cell biological data-it is well established that all metazoan phyla, including the Porifera (sponges), evolved from a common ancestor the search for common, basic principles of pattern formation (body plan) in all phyla began. Common to all metazoan body plans is the formation of at least one axis that runs from the apical to the basal region; examples for this type of organization are the Porifera and the Cnidaria (diploblastic animals). It seems conceivable that the basis for the formation of the Bauplan in sponges is the construction of their skeleton by spicules. In Demospongiae (w…

EXPRESSIONCnidariaSpiculeGENESPROTEINGeneral Physics and AstronomyPaleontologySponge spiculeStructural BiologyevolutionSturtian glaciationAnimalsGeneral Materials ScienceDEPOSITIONbiosilicaBody PatterningbiologyPhylumsilicateinsilica formationSPONGESCell BiologySilicon Dioxidebiology.organism_classificationCathepsinsSuberites domunculaspiculesPoriferaSuberites domunculaBody planEvolutionary biologyMORPHOGENESISSuberitesMicron
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Primary culture of avian embryonic heart forming region cells to study the regulation of vertebrate early heart morphogenesis by vitamin A

2014

Background: Important knowledge about the role of vitamin A in vertebrate heart development has been obtained using the vitamin A-deficient avian in ovo model which enables the in vivo examination of very early stages of vertebrate heart morphogenesis. These studies have revealed the critical role of the vitamin A-active form, retinoic acid (RA) in the regulation of several developmental genes, including the important growth regulatory factor, transforming growth factor-beta2 (TGFβ2), involved in early events of heart morphogenesis. However, this in ovo model is not readily available for elucidating details of molecular mechanisms determining RA activity, thus limiting further examination o…

Early cardiovascular developmentVascular Endothelial Growth Factor AHeart morphogenesisRetinoic acidMorphogenesisEnzyme-Linked Immunosorbent AssayTretinoinChick EmbryoBiologyAvian ProteinsTissue Culture Techniqueschemistry.chemical_compoundTransforming Growth Factor beta2Gene expressionin vitro cultureRetinoic acidMorphogenesisAnimalsVitamin ACells CulturedGeneticsHomeodomain ProteinsEmbryonic heartHeart developmentGATA4Reverse Transcriptase Polymerase Chain ReactionTGFβ2MyocardiumGene Expression Regulation DevelopmentalHeartVitaminsChicken heart forming region cellsFibronectinsGATA4 Transcription Factor:NATURAL SCIENCES::Biology [Research Subject Categories]chemistryVertebratesDevelopmental biologyChickensDevelopmental BiologyResearch ArticleTranscription FactorsBMC Developmental Biology
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Filogenēze un vitālisms: Phylogenese und Vitalismus

1929

Teksts paralēli latviešu un vācu valodā.

EmbrioloģijaOntoģenēzeOntogeneseMorfoģenēzePhylogeneseMorphogenesisMorfoloģija:NATURAL SCIENCES::Biology::Organism biology::Developmental biology [Research Subject Categories]Filoģenēze
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Cadmium induces the expression of specific stress proteins in sea urchin embryos.

2004

Abstract Marine organisms are highly sensitive to many environmental stresses, and consequently, the analysis of their bio-molecular responses to different stress agents is very important for the understanding of putative repair mechanisms. Sea urchin embryos represent a simple though significant model system to test how specific stress can simultaneously affect development and protein expression. Here, we used Paracentrotus lividus sea urchin embryos to study the effects of time-dependent continuous exposure to subacute/sublethal cadmium concentrations. We found that, between 15 and 24 h of exposure, the synthesis of a specific set of stress proteins (90, 72–70, 56, 28, and 25 kDa) was ind…

Embryo NonmammalianBiophysicschemistry.chemical_elementWestern blotBiologyEmbryo developmentBiochemistryGel electrophoresiParacentrotus lividusStress proteins; Embryo development; Gel electrophoresis; Western blotWestern blotCadmium ChloridemedicineMorphogenesisStress ProteinsAnimalsElectrophoresis Gel Two-DimensionalSettore BIO/06 - Anatomia Comparata E CitologiaMolecular BiologyCells CulturedHeat-Shock ProteinsGel electrophoresisCadmiummedicine.diagnostic_testStress proteinEmbryogenesisCell BiologyGastrulaSea urchin embryoBlastulabiology.organism_classificationMolecular biologyCell biologyHighly sensitiveKineticschemistryFertilizationSea UrchinsFemaleBiochemical and biophysical research communications
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