Search results for "Immunology"

showing 10 items of 9651 documents

Immunity and the emergence of virulent pathogens.

2013

6 pages; International audience; The emergence/re-emergence of infectious diseases has been one of the major concerns for human and wildlife health. In spite of the medical and veterinary progresses as to prevent and cure infectious diseases, during the last decades we have witnessed the emergence/re-emergence of virulent pathogens that pose a threat to humans and wildlife. Many factors that might drive the emergence of these novel pathogens have been identified and several reviews have been published on this topic in the last years. Among the most cited and recognized drivers of pathogen emergence are climate change, habitat destruction, increased contact with reservoirs, etc. These factor…

0106 biological sciencesMicrobiology (medical)[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyWildlifeVirulenceBiology[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunologyCommunicable Diseases Emerging010603 evolutionary biology01 natural sciencesMicrobiologyParasite diversity03 medical and health sciencesImmune systemDisease severityImmunityImmune-mediated selection[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisGeneticsAnimalsHumansParasites[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biology[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology0303 health sciencesVirulenceEcology15. Life on land3. Good healthVaccinationInfectious DiseasesHabitat destruction[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunology13. Climate actionHost-Pathogen InteractionsSpite[SDE.BE]Environmental Sciences/Biodiversity and EcologyImmune-suppression[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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The way wear goes: phytolith-based wear on the dentine–enamel system in guinea pigs (Cavia porcellus)

2019

The effect of phytoliths on tooth wear and function has been contested in studies of animal–plant interactions. For herbivores whose occlusal chewing surface consists of enamel ridges and dentine tissue, the phytoliths might particularly erode the softer dentine, exposing the enamel ridges to different occlusal forces and thus contributing to enamel wear. To test this hypothesis, we fed guinea pigs (Cavia porcellus; n = 36 in six groups) for threeweeks exclusively on dry or fresh forage of low(lucerne), moderate (fresh timothy grass) or very high (bamboo leaves) silica content representing corresponding levels of phytoliths. We quantified the effect of these treatments with measuremen…

0106 biological sciencesMolar10253 Department of Small AnimalsDentistry01 natural sciences2300 General Environmental ScienceLower body2400 General Immunology and MicrobiologyphytolithsGeneral Environmental Science2. Zero hunger630 AgricultureEcologybiologyEnamel paintOcclusal forcesGeneral Medicinemedicine.anatomical_structurePhytolithvisual_artvisual_art.visual_art_mediumGeneral Agricultural and Biological Sciences010506 paleontologygrowthGuinea PigsCaviaGenetics and Molecular Biology1100 General Agricultural and Biological Sciences010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biologystomatognathic systemIncisor1300 General Biochemistry Genetics and Molecular BiologymedicineAnimalsHerbivoryDental Enamel0105 earth and related environmental sciencesGeneral Immunology and Microbiologybusiness.industrybiology.organism_classificationAnimal FeedMolarDietstomatognathic diseasesTooth wearplasticityGeneral BiochemistryDentin570 Life sciences; biologyMasticationTooth Weardental wearbusinessProceedings of the Royal Society B: Biological Sciences
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Short-term benefits, but transgenerational costs of maternal loss in an insect with facultative maternal care

2015

A lack of parental care is generally assumed to entail substantial fitness costs for offspring that ultimately select for the maintenance of family life across generations. However, it is unknown whether these costs arise when parental care is facultative, thus questioning their fundamental importance in the early evolution of family life. Here, we investigated the short-term, long-term and transgenerational effects of maternal loss in the European earwig Forficula auricularia , an insect with facultative post-hatching maternal care. We showed that maternal loss did not influence the developmental time and survival rate of juveniles, but surprisingly yielded adults of larger body and force…

0106 biological sciencesNymphInsectaOffspringmedia_common.quotation_subject[SDV]Life Sciences [q-bio]Insect010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesForficula auriculariaAnimalsBody SizeMaternal BehaviorSocial BehaviorComputingMilieux_MISCELLANEOUSResearch Articles030304 developmental biologyGeneral Environmental Sciencemedia_common0303 health sciencesFacultativeGeneral Immunology and MicrobiologybiologyBehavior AnimalEcology[SDV.BA]Life Sciences [q-bio]/Animal biologyExtremitiesGeneral MedicineFeeding Behaviorbiology.organism_classificationFamily life[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyEarwigFemaleSocial evolutionGeneral Agricultural and Biological SciencesPaternal careDemography
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Trans-generational immune priming is constrained by the maternal immune response in an insect.

2012

5 pages; International audience; Immune-challenged vertebrate and invertebrate females can transfer immunity to their off spring. Th is trans-generational immune priming (TGIP) is benefi cial for the off spring if the maternal infection risk persists across generations. However, because immunity is costly, fi tness consequences of TGIP have been found in primed off spring. Furthermore, transferring immunity to off spring may be costly for immune-challenged females who are also carrying the costs of their immune response. A negative relationship between levels of immunity between mothers and off spring might therefore be expected. Consistent with this hypothesis, we show that in the insect, …

0106 biological sciencesOffspringmedia_common.quotation_subjectanimal diseaseschemical and pharmacologic phenomenaInsectBiologyBody size[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunology010603 evolutionary biology01 natural sciences03 medical and health sciencesTrans generationalImmune systemImmunity[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisEcology Evolution Behavior and Systematics030304 developmental biologymedia_common[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology0303 health sciencesbiochemical phenomena metabolism and nutritionMaternal infection[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunologyImmunologybacteria[SDE.BE]Environmental Sciences/Biodiversity and EcologyPriming (psychology)[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Immune response affects ant trophallactic behaviour.

2008

5 pages; International audience; Sociality is associated with many benefits that have favoured its evolution in social insects. However, sociability also presents disadvantages like crowding of large numbers of individuals, which may favour the spread of infections within colonies. Adaptations allowing social insects to prevent and/or control pathogen infections range from behavioural responses to physiological ones including their immune systems. In a state of infection, social interactions with nestmates should be altered in a way which might prevent its spreading. We simulated a microbial infection in workers of the ant Camponotus fellah by the administration of peptidoglycan (PGN) and t…

0106 biological sciencesPhysiology[ SDV.BA.ZI ] Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyAdaptation BiologicalPeptidoglycanBiologySocial interactions010603 evolutionary biology01 natural sciencesAntibacterial peptidesLife history theory03 medical and health sciencesImmune system[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimals[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyIsraelImmune responseSocial BehaviorFormicidaeSociality030304 developmental biology0303 health sciencesAnalysis of Variance[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyAntsFeeding BehaviorANTAntibacterial peptide[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologyInsect ScienceImmunology[SDV.IMM]Life Sciences [q-bio]/ImmunologyEncapsulation[SDE.BE]Environmental Sciences/Biodiversity and EcologyTrophallaxisTrophallaxisCamponotus fellah[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Antagonistic effects of a Mhc class I allele on malaria-infected house sparrows.

2008

8 pages; International audience; Genes of the Major Histocompatibility Complex (Mhc) play a fundamental role during the immune response because MHC molecules expressed on cell surface allow the recognition and presentation of antigenic peptides to T-lymphocytes. Although Mhc alleles have been found to correlate with pathogen resistance in several host-parasite systems, several studies have also reported associations between Mhc alleles and an accrued infection risk or an accelerated disease progression. The existence of these susceptibility alleles is puzzling, as the cost generated by the infection should rapidly eliminate them from the population. Here, we show that susceptibility alleles…

0106 biological sciencesPlasmodiumMESH : Molecular Sequence DataMESH : DNAGenes MHC Class IMESH: Amino Acid Sequenceco-evolutionMESH: Base SequenceMESH : Microsatellite Repeats01 natural sciencessusceptibilityMESH: SparrowsPleiotropy[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: AnimalsMESH : Malaria AvianGenetics0303 health scienceseducation.field_of_studybiologyMESH : Amino Acid Sequence[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]MESH: DNAMESH: Genetic Predisposition to DiseaseMESH: Genes MHC Class I3. Good healthMESH: Malaria Avian[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]MESH: Haemosporidaavian malariaSparrows[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMalaria AvianMolecular Sequence DataPopulationMESH: Genetics PopulationMajor histocompatibility complex010603 evolutionary biologyMESH : Genes MHC Class Iresistance03 medical and health sciencesImmune systemAvian malariaMHC class ImedicinePasser domesticusAnimalsGenetic Predisposition to Disease[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAmino Acid SequenceAlleleeducationAllelesEcology Evolution Behavior and Systematics030304 developmental biologyparasite competitionMESH: Molecular Sequence DataBase Sequencehouse sparrowMESH: PlasmodiumMESH: Alleles[ SDV.GEN.GA ] Life Sciences [q-bio]/Genetics/Animal geneticsDNAHaemosporidamedicine.diseaseMESH : Genetics PopulationHistocompatibility[SDV.GEN.GA]Life Sciences [q-bio]/Genetics/Animal geneticsGenetics PopulationMESH : PlasmodiumImmunologybiology.proteinMESH : Base SequenceMESH : Genetic Predisposition to DiseaseAntagonistic pleiotropyMESH : SparrowsMESH : AnimalsMESH : HaemosporidaMESH: Microsatellite RepeatsMESH : AllelesMicrosatellite Repeats[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Plasmodium relictum infection and MHC diversity in the house sparrow (Passer domesticus).

2010

Antagonistic coevolution between hosts and parasites has been proposed as a mechanism maintaining genetic diversity in both host and parasite populations. In particular, the high level of genetic diversity usually observed at the major histocompatibility complex (MHC) is generally thought to be maintained by parasite-driven selection. Among the possible ways through which parasites can maintain MHC diversity, diversifying selection has received relatively less attention. This hypothesis is based on the idea that parasites exert spatially variable selection pressures because of heterogeneity in parasite genetic structure, abundance or virulence. Variable selection pressures should select for…

0106 biological sciencesPlasmodium[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunology01 natural sciencessusceptibilityMajor Histocompatibility Complex[ SDE ] Environmental SciencesGene Frequency[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisResearch ArticlesGeneral Environmental ScienceGenetics0303 health sciencesbiologyPlasmodium relictumGeneral Medicine3. Good health[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunologyGenetic structure[SDE]Environmental Sciencesavian malariaGeneral Agricultural and Biological SciencesSparrowsMalaria AvianAntagonistic CoevolutionMajor histocompatibility complex010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biologyresistance03 medical and health sciencesAvian malariamedicinePasser domesticusAnimalsSelection GeneticAllelesSelection (genetic algorithm)030304 developmental biologyLocal adaptationGenetic diversity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyGeneral Immunology and Microbiologydiversifying selectionbiology.organism_classificationmedicine.diseaseImmunity InnatePlasmodium relictumbiology.protein[SDE.BE]Environmental Sciences/Biodiversity and Ecology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Effect of repeated exposure to Plasmodium relictum (lineage SGS1) on infection dynamics in domestic canaries.

2010

7 pages; International audience; Parasites are known to exert strong selection pressures on their hosts and, as such, favour the evolution of defence mechanisms. The negative impact of parasites on their host can have substantial consequences in terms of population persistence and the epidemiology of the infection. In natural populations, however, it is difficult to assess the cost of infection while controlling for other potentially confounding factors. For instance, individuals are repeatedly exposed to a variety of parasite strains, some of which can elicit immunological memory, further protecting the host from subsequent infections. Cost of infection is, therefore, expected to be partic…

0106 biological sciencesPlasmodium[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologySecondary infectionCanariesMalaria AvianSecondary infectionPopulationDomestic canariesParasitemia010603 evolutionary biology01 natural sciencesPlasmodium03 medical and health sciencesPrimary infectionAvian malariamedicine[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyExperimental infectioneducation030304 developmental biology0303 health scienceseducation.field_of_study[ SDE.BE ] Environmental Sciences/Biodiversity and EcologybiologyPlasmodium relictumbiology.organism_classificationmedicine.diseasePlasmodium relictum3. Good healthInfectious DiseasesParasitologyImmunologyParasitology[SDE.BE]Environmental Sciences/Biodiversity and EcologyEpidemiological modelsMalaria[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Detection of Allee effects in marine fishes: analytical biases generated by data availability and model selection

2017

The demographic Allee effect, or depensation, implies positive association between per capita population growth rate and population size at low abundances, thereby lowering growth ability of sparse populations. This can have far-reaching consequences on population recovery ability and colonization success. In the context of marine fishes, there is a widespread perception that Allee effects are rare or non-existent. However, studies that have failed to detect Allee effects in marine fishes have suffered from several fundamental methodological and data limitations. In the present study, we challenge the prevailing perception about the rarity of Allee effects by analysing nine populations of …

0106 biological sciencesPopulation DynamicsAtlantic herringBiologyModels Biological010603 evolutionary biology01 natural sciencesPopulation densityGeneral Biochemistry Genetics and Molecular BiologycompensationDepensationsymbols.namesakePer capitaAnimalsPopulation growth14. Life underwaterClupea harengusPopulation GrowthGeneral Environmental ScienceAllee effectlow-abundance dynamicsPopulation DensityModels StatisticalEcologyGeneral Immunology and MicrobiologyEcology010604 marine biology & hydrobiologyModel selectionPopulation sizestock–recruitment relationshipFishesBayes TheoremGeneral MedicineData availabilitydepensationsymbolsta1181General Agricultural and Biological SciencesProceedings of the Royal Society B: Biological Sciences
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Town population size and structuring into villages and households drive infectious disease risks in pre-healthcare Finland

2021

Social life is often considered to cost in terms of increased parasite or pathogen risk. However, evidence for this in the wild remains equivocal, possibly because populations and social groups are often structured, which affects the local transmission and extinction of diseases. We test how the structuring of towns into villages and households influenced the risk of dying from three easily diagnosable infectious diseases—smallpox, pertussis and measles—using a novel dataset covering almost all of Finland in the pre-healthcare era (1800–1850). Consistent with previous results, the risk of dying from all three diseases increased with the local population size. However, the division of towns …

0106 biological sciencesPopulationDiseaseCommunicable Diseases010603 evolutionary biology01 natural sciencesMeaslesGeneral Biochemistry Genetics and Molecular BiologySocial group03 medical and health sciencesmedicineHumansSmallpoxCitieseducationFinland030304 developmental biologyGeneral Environmental SciencePopulation Density0303 health scienceseducation.field_of_studyEcologyGeneral Immunology and MicrobiologyTransmission (medicine)Population sizeGeneral Medicinemedicine.diseaseGeographyInfectious disease (medical specialty)General Agricultural and Biological SciencesDelivery of Health CareDemographyProceedings of the Royal Society B: Biological Sciences
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