Search results for "Paracentrotus"

showing 10 items of 158 documents

Composition and geographic variation of the bacterial microbiota associated with the coelomic fluid of the sea urchin Paracentrotus lividus

2020

AbstractIn the present work, culture-based and culture-independent investigations were performed to determine the microbiota structure of the coelomic fluid of Mediterranean sea urchin Paracentrotus lividus individuals collected from two distinct geographical sites neighboring a high-density population bay and a nature reserve, respectively. Next Generation Sequencing analysis of 16S rRNA gene (rDNA) showed that members of the Proteobacteria, Bacteroidetes and Fusobacteria phyla, which have been previously reported to be commonly retrieved from marine invertebrates, dominate the overall population of microorganisms colonizing this liquid tissue, with minority bacterial genera exhibiting rem…

0301 basic medicineDNA BacterialScience030106 microbiologyPopulationZoologySettore BIO/11 - Biologia MolecolareMicrobial communitiesSettore BIO/19 - Microbiologia GeneraleDNA RibosomalMicrobiologyParacentrotus lividusArticlemicrobiota sea urchin coelomic fluidsea urchin03 medical and health sciencesbiology.animalRNA Ribosomal 16SmicrobiotaAnimalseducationSea urchinPhylogenyeducation.field_of_studyBacteriological TechniquesMultidisciplinarybiologyBacteriaQRBacteroidetesHigh-Throughput Nucleotide SequencingFusobacteriaMarine invertebratesSequence Analysis DNAbiology.organism_classificationcoelomic fuid030104 developmental biologyEchinodermParacentrotus lividusParacentrotusMedicineProteobacteria
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Autophagy is required for sea urchin oogenesis and early development.

2016

SummaryAutophagy is a major intracellular pathway for the degradation and recycling of cytosolic components. Emerging evidence has demonstrated its crucial role during the embryo development of invertebrates and vertebrates. We recently demonstrated a massive activation of autophagy in Paracentrotus lividus embryos under cadmium stress conditions, and the existence of a temporal relationship between induced autophagy and apoptosis. Although there have been numerous studies on the role of autophagy in the development of different organisms, information on the autophagic process during oogenesis or at the start of development in marine invertebrates is very limited. Here we report our recent …

0301 basic medicineEmbryo NonmammalianFluorescent Antibody TechniqueCaspase 3ApoptosisFertilization in VitroBiologyParacentrotus lividus03 medical and health sciencesbiology.animalOrganelleBotanyAutophagyAnimalsSettore BIO/06 - Anatomia Comparata E CitologiaSea urchinLC3 Caspase-3 Embryos Oocytes Paracentrotus lividusAutophagyEmbryoCell BiologyMarine invertebratesbiology.organism_classificationCell biology030104 developmental biologyOocytesParacentrotusMacrolidesMicrotubule-Associated ProteinsIntracellularDevelopmental BiologyZygote (Cambridge, England)
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Hsp40 Is Involved in Cilia Regeneration in Sea Urchin Embryos

2003

In a previous paper we demonstrated that, in Paracentrotus lividus embryos, deciliation represents a specific kind of stress that induces an increase in the levels of an acidic protein of about 40 kD (p40). Here we report that deciliation also induces an increase in Hsp40 chaperone levels and enhancement of its ectodermal localization. We suggest that Hsp40 might play a chaperoning role in cilia regeneration.

0301 basic medicineEmbryo NonmammalianHistologyParacentrotus lividus03 medical and health sciences0302 clinical medicineStress PhysiologicalCulture Techniquesbiology.animalEctodermBotanyAnimalsRegenerationElectrophoresis Gel Two-DimensionalCiliaSettore BIO/06 - Anatomia Comparata E CitologiaSea urchinHeat-Shock ProteinsCentrosomebiologyCiliumEmbryoHSP40 Heat-Shock ProteinsSea urchin embryobiology.organism_classificationHsp40 deciliation sea urchinCell biology030104 developmental biologySea UrchinsAnatomy030217 neurology & neurosurgeryMolecular Chaperones
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Nickel toxicity in P. lividus embryos: Dose dependent effects and gene expression analysis.

2018

Abstract Many industrial activities release Nickel (Ni) in the environment with harmful effects for terrestrial and marine organisms. Despite many studies on the mechanisms of Ni toxicity are available, the understanding about its toxic effects on marine organisms is more limited. We used Paracentrotus lividus as a model to analyze the effects on the stress pathways in embryos continuously exposed to different Ni doses, ranging from 0.03 to 0.5 mM. We deeply examined the altered embryonic morphologies at 24 and 48 h after Ni exposure. Some different phenotypes have been classified, showing alterations at the expenses of the dorso-ventral axis as well as the skeleton and/or the pigment cells…

0301 basic medicineEmbryo NonmammalianPigment cellmRNASettore BIO/05 - ZoologiaEmbryonic DevelopmentGene ExpressionDevelopmentAquatic ScienceOceanographyParacentrotus lividus03 medical and health sciencesNickelGene expressionAnimalsInvertebrateProtein kinase AGeneSkeletonEchinodermbiologyAnimalChemistryStress responseEmbryoGeneral Medicinebiology.organism_classificationPollutionPhenotypeCell biologyHeavy metal030104 developmental biologyToxicityUnfolded protein responseParacentrotusParacentrotuWater Pollutants ChemicalMarine environmental research
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Response to metals treatment of Fra1, a member of the AP-1 transcription factor family, in P. lividus sea urchin embryos

2018

Abstract Lithium (Li), Nickel (Ni), and Zinc (Zn) are metals normally present in the seawater, although they can have adverse effects on the marine ecosystem at high concentrations by interfering with many biological processes. These metals are toxic for sea urchin embryos, affecting their morphology and developmental pathways. In particular, they perturb differently the correct organization of the embryonic axes (animal-vegetal, dorso-ventral): Li is a vegetalizing agent and Ni disrupts the dorso-ventral axis, while Zn has an animalizing effect. To deeply address the response of Paracentrotus lividus embryos to these metals, we studied the expression profiling of Pl-Fra transcription facto…

0301 basic medicineEmbryo NonmammalianProto-oncogeneSea UrchinSettore BIO/05 - ZoologiaAquatic ScienceOceanographyParacentrotus lividus03 medical and health sciencesAnimalsMetallothioneinTranscription factorbiologyCell growthChemistryAnimalMetalStress responseEmbryoGeneral MedicineLeucin zipperBlastulabiology.organism_classificationPollutionCell biologyGene expression profilingTranscription Factor AP-1AP-1 transcription factor030104 developmental biologyHeavy metalGene Expression RegulationMetalsSea UrchinsParacentrotusParacentrotuMetallothioneinWater Pollutants Chemical
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An Intronic cis-Regulatory Element Is Crucial for the Alpha Tubulin Pl-Tuba1a Gene Activation in the Ciliary Band and Animal Pole Neurogenic Domains …

2017

In sea urchin development, structures derived from neurogenic territory control the swimming and feeding responses of the pluteus as well as the process of metamorphosis. We have previously isolated an alpha tubulin family member of Paracentrotus lividus (Pl-Tuba1a, formerly known as Pl-Talpha2) that is specifically expressed in the ciliary band and animal pole neurogenic domains of the sea urchin embryo. In order to identify cis-regulatory elements controlling its spatio-temporal expression, we conducted gene transfer experiments, transgene deletions and site specific mutagenesis. Thus, a genomic region of about 2.6 Kb of Pl-Tuba1a, containing four Interspecifically Conserved Regions (ICRs…

0301 basic medicineEmbryologyPolarity in embryogenesislcsh:MedicineGene ExpressionMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)medicine.disease_causeBiochemistryTubulinGene expressionElectron MicroscopyTransgeneslcsh:SciencePromoter Regions GeneticSea urchinConserved SequenceSequence DeletionGeneticsRegulation of gene expressionMicroscopyMutationMultidisciplinaryMedicine (all)Gene Expression Regulation DevelopmentalGenomicsAnimal ModelsTATA BoxEnzymesEnhancer Elements GeneticExperimental Organism Systemsembryonic structuresParacentrotusTranscription Initiation SiteOxidoreductasesLuciferaseResearch ArticleEchinodermsTranscriptional ActivationImaging TechniquesNeurogenesisGreen Fluorescent ProteinsEmbryonic DevelopmentSettore BIO/11 - Biologia MolecolareBiologyResearch and Analysis MethodsGenome ComplexityParacentrotus lividus03 medical and health sciencesSpecies SpecificityTubulinsbiology.animalFluorescence ImagingGeneticsmedicineConsensus sequenceAnimalsCiliaEnhancerBiochemistry Genetics and Molecular Biology (all)Binding SitesModels Geneticlcsh:REmbryosOrganismsBiology and Life SciencesComputational BiologyProteinsbiology.organism_classificationInvertebratesIntronsCytoskeletal Proteins030104 developmental biologyAgricultural and Biological Sciences (all)Bright Field ImagingSea UrchinsEnzymologyMutagenesis Site-Directedlcsh:QTransmission Electron MicroscopyDevelopmental BiologyTranscription FactorsPLOS ONE
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Diversification of spatiotemporal expression and copy number variation of the echinoid hbox12/pmar1/micro1 multigene family

2017

Changes occurring during evolution in the cis-regulatory landscapes of individual members of multigene families might impart diversification in their spatiotemporal expression and function. The archetypal member of the echinoid hbox12/pmar1/micro1 family is hbox12-a, a homeobox-containing gene expressed exclusively by dorsal blastomeres, where it governs the dorsal/ventral gene regulatory network during embryogenesis of the sea urchin Paracentrotus lividus. Here we describe the inventory of the hbox12/pmar1/micro1 genes in P. lividus, highlighting that gene copy number variation occurs across individual sea urchins of the same species. We show that the various hbox12/pmar1/micro1 genes grou…

0301 basic medicineEvolutionary GeneticsEmbryologyGene regulatory networklcsh:MedicineGene ExpressionMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)Database and Informatics MethodsGene duplicationGene Regulatory NetworksCopy-number variationlcsh:ScienceSea urchinPhylogenyMultidisciplinarybiologyPhylogenetic treeMedicine (all)Genes HomeoboxGene Expression Regulation DevelopmentalAnimal ModelsGenomicsExperimental Organism SystemsMultigene FamilySequence AnalysisResearch ArticleEchinodermsDNA Copy Number VariationsBioinformaticsDNA transcriptionZoologySettore BIO/11 - Biologia MolecolareResearch and Analysis MethodsParacentrotus lividus03 medical and health sciencesSequence Motif Analysisbiology.animalGeneticsGene familyAnimalsGeneEvolutionary BiologyBiochemistry Genetics and Molecular Biology (all)lcsh:REmbryosOrganismsBiology and Life SciencesComputational Biologybiology.organism_classificationGenome AnalysisGenomic LibrariesInvertebrates030104 developmental biologyAgricultural and Biological Sciences (all)Evolutionary biologySea Urchinslcsh:QSequence AlignmentDevelopmental Biology
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Effects of exposure to gadolinium on the development of geographically and phylogenetically distant sea urchins species.

2016

Gadolinium (Gd), a metal of the lanthanide series used as contrast agent for magnetic resonance imaging, is released into the aquatic environment. We investigated the effects of Gd on the development of four sea urchin species: two from Europe, Paracentrotus lividus and Arbacia lixula, and two from Australia, Heliocidaris tuberculata and Centrostephanus rodgersii. Exposure to Gd from fertilization resulted in inhibition or alteration of skeleton growth in the plutei. The similar morphological response to Gd in the four species indicates a similar mechanism underlying abnormal skeletogenesis. Sensitivity to Gd greatly varied, with the EC50 ranging from 56 nM to 132 μM across the four species…

0301 basic medicineGadoliniumved/biology.organism_classification_rank.specieschemistry.chemical_elementGadolinium010501 environmental sciencesAquatic ScienceEcotoxicologyOceanography01 natural sciencesParacentrotus lividusEnvironmental impact03 medical and health sciencesDevelopmental abnormalityEchinoid; Embryos; Skeletogenesis; Developmental abnormality; Medical drugs; Ecotoxicology; Environmental impactbiology.animalEcotoxicologyAnimalsCentrostephanus rodgersiiSettore BIO/06 - Anatomia Comparata E CitologiaArbacia lixulaSea urchin0105 earth and related environmental sciencesArbaciaLarvabiologyEcologyved/biologyGeneral Medicinebiology.organism_classificationPollutionPhylogeographySkeletogenesi030104 developmental biologyMedical drugchemistryEmbryoAquatic environmentSea UrchinsParacentrotusEchinoidWater Pollutants ChemicalEnvironmental MonitoringMarine environmental research
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Stress and immune response to bacterial LPS in the sea urchin Paracentrotus lividus (Lamarck, 1816).

2018

The immune system of the sea urchin species Paracentrotus lividus is highly complex and, as yet, poorly understood. P. lividus coelomocytes mediate immune response through phagocytosis and encapsulation of non-self particles, in addition to the production of antimicrobial molecules. Despite this understanding, details of exactly how these processes occur and the mechanisms which drive them are still in need of clarification. In this study, we show how the bacterial lipopolysaccharides (LPS) is able to induce a stress response which increases the levels of the heat shock proteins HSP70 and HSP90 only a few hours after treatment. This study also shows that LPS treatment increases the expressi…

0301 basic medicineLipopolysaccharidesPhagocytosisAntimicrobial peptidesAquatic ScienceParacentrotus lividusAntimicrobical peptide03 medical and health sciencesImmune systemStress PhysiologicalHeat shock proteinbiology.animalEnvironmental ChemistryHSP90AnimalsSea urchinHSP70Heat-Shock ProteinsbiologyEchinoderm04 agricultural and veterinary sciencesGeneral Medicinebiology.organism_classificationHsp90Immunity InnateHsp70Cell biologyThymosin030104 developmental biologyImmune System040102 fisheriesbiology.proteinParacentrotus0401 agriculture forestry and fisheriesCoelomocyteParacentrotus lividuFishshellfish immunology
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Mitochondria during sea urchin oogenesis.

2017

SummarySea urchin represents an ideal model for studies on fertilization and early development, but the achievement of egg competence and mitochondrial behaviour during oogenesis remain to be enlightened. Oocytes of echinoid, such as sea urchin, unlike other echinoderms and other systems, complete meiotic maturation before fertilization. Mitochondria, the powerhouse of eukaryotic cells, contain a multi-copy of the maternally inherited genome, and are involved directly at several levels in the reproductive processes, as their functional status influences the quality of oocytes and contributes to fertilization and embryogenesis. In the present paper, we report our latest data on mitochondrial…

0301 basic medicineMitochondrial DNAEmbryo NonmammalianMitoTrackerHsp56MitochondrionOogenesisDNA MitochondrialParacentrotus lividusOxidative PhosphorylationTacrolimus Binding Proteins03 medical and health sciencesOogenesisMeiosisbiology.animalPicoGreenAnimalsConfocal laser scanning microscopySettore BIO/06 - Anatomia Comparata E CitologiaSea urchinGerminal vesiclebiologymtDNAAnatomyCell Biologybiology.organism_classificationCell biologyMitochondria030104 developmental biologySea UrchinsOocytesFemaleDevelopmental biologyDevelopmental BiologyZygote (Cambridge, England)
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