Search results for "INSECTA"

showing 10 items of 265 documents

New fossil arthropods (Notostraca and Insecta: Syntonopterida) in the Continental Middle Permian of Provence (Bas-Argens Basin, France).

2009

9 pages; Apart frequent and relatively common ichnites, only a few body fossils (Ostracoda) have been mentioned in the Red Continental Permian formations of Provence till these last years. During 2006 and 2007 field researches, new arthropods have been discovered in the Pradineaux Formation of the Bas-Argens. They are Triopsidae (Crustacea, Notostraca) and an insect wing (Syntonopteridae) corresponding to a new genus and species Gallolithoneura butchlii gen. et sp. n. This latter is the first insect record in the Permian of Provence and the youngest one of this enigmatic Carboniferous paleopteran family. As in the other French Permian basins (Lodève, Saint-Affrique), these discoveries demon…

0106 biological sciences010506 paleontologyInsectaMiddle PermianPaleozoicPermianArthropodaBiostratigraphySyntonopterida010603 evolutionary biology01 natural sciencesPaleontologyNotostracaGenusCarboniferousPaleoclimatology0105 earth and related environmental sciences[ SDU.STU.PG ] Sciences of the Universe [physics]/Earth Sciences/PaleontologybiologyEcologyGeneral EngineeringMandibulataNotostracabiology.organism_classificationVarFrance[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/PaleontologyGeology
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Microbial symbionts expanding or constraining abiotic niche space in insects

2020

In addition to their well-studied contributions to their host’s nutrition, digestion, and defense, microbial symbionts of insects are increasingly found to affect their host’s response toward abiotic stressors. In particular, symbiotic microbes can reduce or enhance tolerance to temperature extremes, improve desiccation resistance by aiding cuticle biosynthesis and sclerotization, and detoxify heavy metals. As such, individual symbionts or microbial communities can expand or constrain the abiotic niche space of their host and determine its adaptability to fluctuating environments. In light of the increasing impact of humans on climate and environment, a better understanding of host-microbe …

0106 biological sciences0301 basic medicineEntomologyInsectamedia_common.quotation_subjectAcclimatizationNicheInsectBiology010603 evolutionary biology01 natural sciencesAdaptability03 medical and health sciencesAnimal ShellsStress PhysiologicalMetals HeavyNitrogen FixationAnimalsSymbiosisEcology Evolution Behavior and SystematicsEcosystemmedia_commonAbiotic componentResistance (ecology)Host Microbial InteractionsHost (biology)EcologyMicrobiotafungiTemperatureDroughts030104 developmental biology13. Climate actionInsect ScienceDesiccationCurrent Opinion in Insect Science
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Social immunity: why we should study its nature, evolution and functions across all social systems.

2018

Mounting defences against pathogens is a necessity for all animals. Although these defences have long been known to rely on individual processes such as the immune system, recent studies have emphasized the importance of social defences for group-living hosts. These defences, called social immunity, have been mostly studied in eusocial insects such as bees, termites and ants, and include, for instance, mutual cleaning and waste management. Over the last few years, however, a growing number of works called for a broader exploration of social immunity in non-eusocial species. In this review, we summarize the rationales of this call and examine why it may provide major insights into our curren…

0106 biological sciences0301 basic medicineEvolution of eusocialityInsecta[SDV]Life Sciences [q-bio]Biology010603 evolutionary biology01 natural sciencesHerd immunitySocial life03 medical and health sciencesAnimalsSocial BehaviorComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and SystematicsCognitive scienceBehavior Animal[SDV.BA]Life Sciences [q-bio]/Animal biologyEusocialityBiological Evolution[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology030104 developmental biologyConceptual frameworkSocial systemInsect ScienceHost-Pathogen InteractionsSocial evolutionCurrent opinion in insect science
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How does climate change affect social insects?

2020

Climate change poses a major threat to global biodiversity, already causing sharp declines of populations and species. In some social insect species we already see advanced phenologies, changes in distribution ranges, and changes in abundance Rafferty (2017) and Diamond et al. (2017). Physiologically, social insects are no different from solitary insects, but they possess a number of characteristics that distinguish their response to climate change. Here, we examine these traits, which might enable them to cope better with climate change than solitary insects, but only in the short term. In addition, we discuss how climate change will alter biotic interactions and ecosystem functions, and h…

0106 biological sciences0301 basic medicineInsectaClimate ChangeClimate changeDistribution (economics)BiologyAffect (psychology)010603 evolutionary biology01 natural sciences03 medical and health sciencesAbundance (ecology)AnimalsEcosystemskin and connective tissue diseasesEcology Evolution Behavior and SystematicsEcosystemEcologybusiness.industryfungiBiodiversity030104 developmental biologyInsect Sciencesense organsbusinessGlobal biodiversityCurrent opinion in insect science
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Ecology and Evolution of Communication in Social Insects

2016

Insect life strategies comprise all levels of sociality from solitary to eusocial, in which individuals form persistent groups and divide labor. With increasing social complexity, the need to communicate a greater diversity of messages arose to coordinate division of labor, group cohesion, and concerted actions. Here we summarize the knowledge on prominent messages in social insects that inform about reproduction, group membership, resource locations, and threats and discuss potential evolutionary trajectories of each message in the context of social complexity.

0106 biological sciences0301 basic medicineInsectaContext (language use)Biology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPheromones03 medical and health sciencesGroup cohesivenessAnimalsSocialityCommunicationBehavior AnimalEcologybusiness.industryBiochemistry Genetics and Molecular Biology(all)Social complexityEusocialityBiological EvolutionAnimal Communication030104 developmental biologyEvolutionary ecologybusinessDivision of labourDiversity (business)Cell
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Using metabarcoding to reveal and quantify plant-pollinator interactions.

2016

AbstractGiven the ongoing decline of both pollinators and plants, it is crucial to implement effective methods to describe complex pollination networks across time and space in a comprehensive and high-throughput way. Here we tested if metabarcoding may circumvent the limits of conventional methodologies in detecting and quantifying plant-pollinator interactions. Metabarcoding experiments on pollen DNA mixtures described a positive relationship between the amounts of DNA from focal species and the number of trnL and ITS1 sequences yielded. The study of pollen loads of insects captured in plant communities revealed that as compared to the observation of visits, metabarcoding revealed 2.5 tim…

0106 biological sciences0301 basic medicineInsectaDNA PlantPollinationmedia_common.quotation_subjectInsectBiologymedicine.disease_cause010603 evolutionary biology01 natural sciencesArticle03 medical and health sciencesSpecies SpecificityPollinatorPollenmedicine[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsDNA Barcoding TaxonomicPollinationPlant Physiological Phenomenamedia_common[SDV.GEN]Life Sciences [q-bio]/Genetics[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMultidisciplinaryCommunityEcologyPlant communitySequence Analysis DNAPlants15. Life on landEcological genetics030104 developmental biologyTaxonPollen[SDE.BE]Environmental Sciences/Biodiversity and Ecology[ SDV.GEN ] Life Sciences [q-bio]/Genetics[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Evolutionary importance of intraspecific variation in sex pheromones

2021

Sex pheromones in many insect species are important species-recognition signals that attract conspecifics and inhibit attraction between heterospecifics; therefore, sex pheromones have predominantly been considered to evolve due to interactions between species. Recent research, however, is uncovering roles for these signals in mate choice, and that variation within and between populations can be drivers of species evolution. Variation in pheromone communication channels arises from a combination of context-dependent, condition-dependent, or genetic mechanisms in both signalers and receivers. Variation can affect mate choice and thus gene flow between individuals and populations, affecting s…

0106 biological sciences0301 basic medicineInsectaEvolution of sexual reproductionmedia_common.quotation_subjectevoluutioInsectBiology010603 evolutionary biology01 natural sciencesPheromonesintraspecific communicationIntraspecific competition03 medical and health sciencestrait variationAnimalsHumansSex Attractantsmuuntelu (biologia)Ecology Evolution Behavior and Systematicsmedia_commonsexual communicationferomonitspecies interactionssignal evolutionluonnonvalintaInterspecific competitionAttraction030104 developmental biologyVariation (linguistics)Mate choicesukupuolivalintaEvolutionary biologySex pheromonePheromonelajiutuminenEvolutionary ecologyTrends in Ecology & Evolution
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Insect societies fight back: the evolution of defensive traits against social parasites

2018

Insect societies face many social parasites that exploit their altruistic behaviours or their resources. Due to the fitness costs these social parasites incur, hosts have evolved various behavioural, chemical, architectural and morphological defence traits. Similar to bacteria infecting multicellular hosts, social parasites have to successfully go through several steps to exploit their hosts. Here, we review how social insects try to interrupt this sequence of events. They can avoid parasite contact by choosing to nest in parasite-free locales or evade attacks by adapting their colony structure. Once social parasites attack, hosts attempt to detect them, which can be facilitated by adjustme…

0106 biological sciences0301 basic medicineInsectaExploitmedia_common.quotation_subjectInsectBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesNestAnimalsSocial BehaviorCoevolutionmedia_commonEcologyHost (biology)ReproductionfungiMultiple traitsfood and beveragesArticlesBiological EvolutionBroodAggressionMulticellular organism030104 developmental biologyGeneral Agricultural and Biological Sciences
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Life history evolution in social insects: a female perspective

2016

Social insects are known for their unusual life histories with fecund, long-lived queens and sterile, short-lived workers. We review ultimate factors underlying variation in life history strategies in female social insects, whose social life reshapes common trade-offs, such as the one between fecundity and longevity. Interspecific life history variation is associated with colony size, mediated by changes in division of labour and extrinsic mortality. In addition to the ratio of juvenile to adult mortality, social factors such as queen number influence life history trajectories. We discuss two hypotheses explaining why queen fecundity and lifespan is higher in single-queen societies and sugg…

0106 biological sciences0301 basic medicineInsectaHARVESTER ANTmedia_common.quotation_subjectLongevityHYMENOPTERAFertilityCOLONY SIZEKin selectionBiology010603 evolutionary biology01 natural sciencesLife history theory03 medical and health sciencesAnimalsJuvenileSocial BehaviorEUSOCIALITYLife History TraitsEcology Evolution Behavior and Systematicsmedia_commonBehavior AnimalEcologyKIN SELECTIONLongevityWORKERSQUEENSPANFecundityEusocialityREPRODUCTIONFertility030104 developmental biologyInsect ScienceANT COLONIESFemaleDivision of labour
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Social isolation causes downregulation of immune and stress response genes and behavioural changes in a social insect

2021

Humans and other social mammals experience isolation from their group as stressful, triggering behavioural and physiological anomalies that reduce fitness. While social isolation has been intensely studied in social mammals, it is less clear how social insects, which evolved sociality independently, respond to isolation. Here we examined whether the typical mammalian responses to social isolation, e.g., an impaired ability to interact socially and immune suppression are also found in social insects. We studied the consequences of social isolation on behaviour and brain gene expression in the ant Temnothorax nylanderi. Following isolation, workers interacted moderately less with adult nestma…

0106 biological sciences0301 basic medicineInsectaTemnothorax nylanderiIsolation (health care)ved/biology.organism_classification_rank.speciesDown-Regulation010603 evolutionary biology01 natural sciences03 medical and health sciencesImmune systemGeneticsmedicineAnimalsHumansSocial isolationSocial BehaviorEcology Evolution Behavior and SystematicsSocialityGeneticsTemnothoraxbiologyBehavior Animalved/biologyAntsStressorfungibiology.organism_classification030104 developmental biologySocial IsolationSocial animalmedicine.symptomMolecular Ecology
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