Search results for "INSECT"

showing 10 items of 2033 documents

Sequence of the new Drosophila melanogaster small heat-shock-related gene, lethal(2) essential for life [l(2)efl], at locus 59F4,5.

1995

Abstract In this study, we report the molecular cloning of a novel Drosophila melanogaster small heat-shock (HS)-homologous gene, l(2)efl, identified on the right arm of the second chromosome at locus 59F4,5. We describe the temporal expression of l(2)efl in the wild-type and present its structure. The deduced amino-acid sequence of the Efl protein shows significant homology to all known small HS proteins identified in Drosophila and vertebrates, and to mammalian α-crystallin.

Signal peptideTranscription GeneticMolecular Sequence DataRestriction MappingLocus (genetics)Genes InsectMolecular cloningHomology (biology)biology.animalSequence Homology Nucleic AcidGeneticsAnimalsDrosophila ProteinsAmino Acid SequenceRNA MessengerRelated geneCloning MolecularGeneHeat-Shock ProteinsIn Situ HybridizationGeneticsbiologyBase SequenceSequence Homology Amino AcidVertebrateGeneral MedicineSequence Analysis DNAbiology.organism_classificationDrosophila melanogasterInsect HormonesGenes LethalDrosophila melanogasterGene
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Characterization of a cDNA clone encoding a glycine-rich cuticular protein of Tenebrio molitor: developmental expression and effect of a juvenile hor…

1992

0962-1075 (Print) Journal Article; The complete sequence of a cDNA clone, isolated from epidermal mRNA of Tenebrio molitor using a monoclonal antibody raised against an adult-specific cuticular antigen only present in the hard cuticle, was obtained after primer extension at the 5' end. From this cDNA sequence, the deduced protein encompasses 199 amino acids (including a signal peptide) with a total molecular weight of 20.7 kDa. The protein exhibits a bipartite structure: glycine-rich region located in its NH2-terminal part and a carboxy-terminal domain sharing homologies with other cuticular proteins of Orthoptera, Diptera and Lepidoptera. In-situ hybridization analysis shows that the corre…

Signal peptideanimal structuresMethoprene/*pharmacologyCuticleMolecular Sequence DataGlycineBiologyPrimer extensionBiological/drug effects/geneticsComplete sequenceComplementary DNAGeneticsAnimalsAmino Acid SequenceCloning MolecularTenebrioTenebrio/drug effects/*genetics/growth & developmentMolecular BiologyEpidermis/chemistry/growth & developmentProteins/drug effects/*genetics/isolation & purificationchemistry.chemical_classificationMessenger RNABase SequenceMetamorphosisfungiMetamorphosis BiologicalProteinsMolecularSequence Analysis DNADNAMethopreneMolecular biologyAmino acidGlycine/*genetics/metabolismchemistryInsect ScienceJuvenile hormoneInsect ProteinsEpidermisSequence AnalysisCloning
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Massive presence of insertion sequences in the genome of SOPE, the primary endosymbiont of the rice weevil Sitophilus oryzae

2008

Bacteria that establish an obligate intracellular relationship with eukaryotic hosts undergo an evolutionary genomic reductive process. Recent studies have shown an increase in the number of mobile elements in the first stage of the adaptive process towards intracellular life, although these elements are absent in ancient endosymbionts. Here, the genome of SOPE, the obligate mutualistic endosymbiont of rice weevils, was used as a model to analyze the initial events that occur after symbiotic integration. During the first phases of the SOPE genome project, four different types of insertion sequence (IS) elements, belonging to well-characterized IS families from γ-proteobacteria, were identif…

Sitophilus oryzae (rice weevil)Insecta[SDV]Life Sciences [q-bio]MESH: Genome BacterialMESH: WeevilsEvolution MolecularOpen Reading FramesMESH: Insects:CIENCIAS DE LA VIDA::Microbiología [UNESCO]SOPE (Sitophilus oryzae primary endosymbiont) ; Sitophilus oryzae (rice weevil) ; Insertion sequences (IS) ; EndosymbiosisAnimalsMESH: AnimalsSymbiosisUNESCO::CIENCIAS DE LA VIDA::MicrobiologíaMESH: Evolution MolecularMESH: SymbiosisEndosymbiosisSOPE (Sitophilus oryzae primary endosymbiont)Oryza[SDV.EE.IEO] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: Open Reading FramesMESH: Oryza sativaInsertion sequences (IS)Mutagenesis InsertionalMESH: GammaproteobacteriaMESH: Mutagenesis Insertional1-1-1 Article périodique à comité de lectureWeevilsGammaproteobacteriaGenome Bacterial[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Tetraspanin CD151 Mediates Papillomavirus Type 16 Endocytosis

2013

ABSTRACT Human papillomavirus type 16 (HPV16) is the primary etiologic agent for cervical cancer. The infectious entry of HPV16 into cells occurs via a so-far poorly characterized clathrin- and caveolin-independent endocytic pathway, which involves tetraspanin proteins and actin. In this study, we investigated the specific role of the tetraspanin CD151 in the early steps of HPV16 infection. We show that surface-bound HPV16 moves together with CD151 within the plane of the membrane before they cointernalize into endosomes. Depletion of endogenous CD151 did not affect binding of viral particles to cells but resulted in reduction of HPV16 endocytosis. HPV16 uptake is dependent on the C-termina…

Small interfering RNAEndosomevirusesmedia_common.quotation_subjectDNA Mutational AnalysisImmunologyEndocytic cycleIntegrinTetraspanin 24EndocytosisMicrobiologyClathrinCell LineTetraspaninVirologyHumansInternalizationmedia_commonHuman papillomavirus 16integumentary systembiologyvirus diseasesVirus InternalizationMolecular biologyEndocytosisfemale genital diseases and pregnancy complicationsVirus-Cell InteractionsCell biologyGene Knockdown TechniquesInsect Sciencebiology.proteinMutant ProteinsJournal of Virology
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Internalization of coxsackievirus A9 is mediated by {beta}2-microglobulin, dynamin, and Arf6 but not by caveolin-1 or clathrin.

2010

ABSTRACT Coxsackievirus A9 (CAV9) is a member of the human enterovirus B species within the Enterovirus genus of the family Picornaviridae . It has been shown to utilize αV integrins, particularly αVβ6, as its receptors. The endocytic pathway by which CAV9 enters human cells after the initial attachment to the cell surface has so far been unknown. Here, we present a systematic study concerning the internalization mechanism of CAV9 to A549 human lung carcinoma cells. The small interfering RNA (siRNA) silencing of integrin β6 subunit inhibited virus proliferation, confirming that αVβ6 mediates the CAV9 infection. However, siRNAs against integrin-linked signaling molecules, such as Src, Fyn, R…

Small interfering RNAmedia_common.quotation_subjectImmunologyEndocytic cycleIntegrinCaveolin 1CoxsackievirusEndocytosisCaveolaeMicrobiologyClathrinAmilorideDynamin IIVirologyCell Line TumorHumansRNA Small InterferingInternalizationmedia_commonDynaminbiologyADP-Ribosylation FactorsVirus Internalizationbiology.organism_classificationMolecular biologyClathrinEndocytosisCell biologyEnterovirus B HumanVirus-Cell InteractionsADP-Ribosylation Factor 6Insect Sciencebiology.proteinPinocytosisbeta 2-MicroglobulinJournal of virology
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Interactions related to non-host snails in the host-finding process of Euparyphium albuferensis and Echinostoma friedi (Trematoda: Echinostomatidae) …

2003

In order to determine whether the miracidia of Euparyphium albuferensis and Echinostoma friedi are sensitive to their host snail (HS) and capable of discriminating between HS and non-host snails (NHS), or whether these NHS can interfere and thus reduce the infection rates (decoy effect), a total of three experiments were conducted with HS, NHS and snail-conditioned water (SCW). Gyraulus chinensis is the HS for E. albuferensis miracidia, while Physa acuta, Radix peregra and Lymnaea fuscus are considered NHS. For E. friedi miracidia R. peregra, G. chinensis and L. fuscus are the HS, while P. acuta is the NHS. The NHS R. peregra produces the greatest decoy effect on Euparyphium albuferensis mi…

SnailsRadix peregraZoologySnailDisease VectorsHost-Parasite InteractionsSpecies Specificitybiology.animalCricetinaeEchinostomaGastropodaAnimalsGyraulus chinensisEchinostomiasisGeneral VeterinarybiologyMesocricetusEcologyIntermediate hostWaterGeneral Medicinebiology.organism_classificationPhysaRatsInfectious DiseasesInsect ScienceParasitologyTrematodaEchinostomaParasitology research
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Miracidial infectivity of Hypoderaeum conoideum (Trematoda: Echinostomatidae): differential susceptibility of two lymnaeid species.

1999

A study was made of the infectivity of Hypoderaeum conoideum miracidia to a range of laboratory-reared specimens of freshwater snail species (Lymnaea peregra, L. corvus, Physella acuta, and Gyraulus chinensis) that coexist with the parasite in the same natural habitat. L. peregra and L. corvus were found to be equally susceptible to the parasite when specimens of each snail species were singly exposed to miracidia. However, when miracidia could choose either lymnaeid species, they showed a high degree of specificity toward L. peregra. The results obtained suggest that H. conoideum miracidia are capable of distinguishing among these lymnaeids in their orientation to the host. This indicates …

SnailsZoologyFresh WaterSnailBiologyPhysella acutaFreshwater snailLymnaeidaeHost-Parasite InteractionsSpecies Specificitybiology.animalAnimalsGyraulus chinensisLymnaeaEchinostomatidaeGeneral VeterinaryEcologyIntermediate hostGeneral Medicinebiology.organism_classificationHypoderaeum conoideumInfectious DiseasesInsect ScienceParasitologyTrematodaSignal TransductionParasitology research
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The life cycle ofBrachylaima ruminae n. sp. (Trematoda: Brachylaimidae), a parasite of rodents

1986

The life cycle of Brachylaima ruminae n.sp. (Trematoda: Brachylaimidae), a duodenal parasite of rodents on the Mediterranean island of Formentera (Spain) is elucidated. The new species follows a terrestrial triheteroxenous life cycle. Eggs passed in the faeces of the definitive host must be ingested by a specific first intermediate host, the land snail Rumina decollata. Branched cercariogenous sporocysts develop in the digestive gland. Microcercous cercariae come out through the terminal birth pores of the branches. Cercariae shed by the snail are terrestrial, crawling on humid substratum. They contact the second intermediate host, another land snail, principally the species R. decollata an…

SnailsZoologyRodentiaTrematode InfectionsSnailHost-Parasite InteractionsRodent Diseasesbiology.animalparasitic diseasesGastropodaAnimalsParasite hostingBrachylaimaGeneral VeterinarybiologyEcologyLand snailIntermediate hostGeneral Medicinebiology.organism_classificationMuridaeInfectious DiseasesSpainExcretory systemInsect ScienceParasitologyTrematodaTrematodaZeitschrift f�r Parasitenkunde Parasitology Research
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Spatially segregated transmission of Co-occluded baculoviruses limits virus–virus interactions mediated by cellular coinfection during primary infect…

2022

This article belongs to the Section General Virology.

Social evolutionInsectaCoinfectionbaculovirus; occlusion bodies; collective infectious units; cooperation; social evolutionSpodopteraNucleopolyhedrovirusesCooperationInfectious DiseasesVirologyLarvaAnimalsCollective infectious unitsOcclusion bodiesBaculovirusNucleocapsidBaculoviridae
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Influences of Relatedness, Food Deprivation, and Sex on Adult Behaviors in the Group-living Insect Forficula auricularia

2014

The evolution of group living is generally associated with the emergence of social behaviors that ensure fitness benefits to group members. However, the expression of these behaviors may depend on group composition, which can vary over time with respect to sex, starvation status, and relatedness. Here, we investigated (1) whether adults of the group-living European earwig, Forficula auricularia, show cooperative behaviors toward conspecifics and (2) whether sex, food availability, and relatedness shape the nature and frequency of these behaviors. We conducted a full-factorial experiment using 108 unisexual pairs of adults, in which we manipulated these three factors and video-recorded the e…

Social stressbiologyAggressionmedia_common.quotation_subjectFrass[SDV.BA]Life Sciences [q-bio]/Animal biology[SDV]Life Sciences [q-bio]Insectbiology.organism_classification[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyForficula auriculariaEarwigmedicineSocial groomingAnimal Science and Zoologymedicine.symptomSocial psychologyEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUSDemographymedia_commonSocial behavior
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