Search results for "Thorax"

showing 10 items of 177 documents

2019

Gut bacteria aid their host in digestion and pathogen defense, and bacterial communities that differ in diversity or composition may vary in their ability to do so. Typically, the gut microbiomes of animals living in social groups converge as members share a nest environment and frequently interact. Social insect colonies, however, consist of individuals that differ in age, physiology, and behavior, traits that could affect gut communities or that expose the host to different bacteria, potentially leading to variation in the gut microbiome within colonies. Here we asked whether bacterial communities in the abdomen of Temnothorax nylanderi ants, composed largely of the gut microbiome, differ…

0106 biological sciences0303 health sciencesEcologyTemnothorax nylanderiTemnothoraxbiologyved/biologyHost (biology)ved/biology.organism_classification_rank.speciesZoologyHoney beebiology.organism_classification010603 evolutionary biology01 natural sciencesBrood03 medical and health sciencesNestMicrobiomeEcology Evolution Behavior and SystematicsCoevolution030304 developmental biologyNature and Landscape ConservationEcology and Evolution
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Emigration speed and the production of sexuals in colonies of the ant Temnothorax crassispinus under high and low levels of disturbance

2015

A nest relocation is costly for social insects, and involves hazards. Emigrations were studied in Temnothorax crassispinus ant colonies, which inhabit ephemeral nest sites, and which frequently change their nests. In a laboratory experiment, ant colonies from one group were forced to change their nest sites 10 times over a ca. 3-month period, whilst colonies from the second group were forced to adopt this practice twice (on the beginning of May, and in the second half of July). Colonies of the ant from both the groups reduced their total emigration duration. However, the duration of the transport phase remained unchanged. In the case of colonies with higher level of disturbance, there was n…

0106 biological sciencesDisturbance (geology)Social insectEcology05 social sciencesTemnothorax crassispinusNest movementAnt colonyBiology010603 evolutionary biology01 natural sciencesEnergy allocationANTEmigrationNestColony sizeInsect Science0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyLaboratory experimentEnergy allocationEcology Evolution Behavior and SystematicsResearch ArticleInsectes Sociaux
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Temperature differences associated with colour do not determine where the acorn ant Temnothorax crassispinus (Hymenoptera: Formicidae) chooses to nest

2021

Temperature is an important factor for invertebrates. Social insects build nests, which along with their ability to thermoregulate, provide shelter from extreme temperatures. However, for many species of ants the most common method of controlling the temperature inside a nest is to choose a suitable nest site. During a fi eld experiment, the choice of nest site by the acorn ant Temnothorax crassispinus, a species which lives in coniferous and mixed forests, was studied. It typically occupies ephemeral nest sites and can move to a new nest site several times in one season. It was predicted that in early spring, dark coloured nest sites would be warmer and thus more frequently occupied by ant…

0106 biological sciencesField experimentHymenopteratemnothorax crassispinusAcorn010603 evolutionary biology01 natural sciencesforestNestacorn antInvertebratesocial insectsbiologyEcologynest site selectionEphemeral keytemperaturenest colourAnt colonybiology.organism_classificationANTformicidae010602 entomologyQL1-991nest cavityInsect SciencehymenopteraZoologyEuropean Journal of Entomology
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Social organization and the evolution of life-history traits in two queen morphs of the ant Temnothorax rugatulus.

2020

ABSTRACT During the evolution of social insects, not only did life-history traits diverge, with queens becoming highly fecund and long lived compared with their sterile workers, but also individual traits lost their importance compared with colony-level traits. In solitary animals, fecundity is largely influenced by female size, whereas in eusocial insects, colony size and queen number can affect the egg-laying rate. Here, we focused on the ant Temnothorax rugatulus, which exhibits two queen morphs varying in size and reproductive strategy, correlating with their colony's social organization. We experimentally tested the influence of social structure, colony and body size on queen fecundity…

0106 biological sciencesInsectaPhysiologymedia_common.quotation_subjectved/biology.organism_classification_rank.speciesZoologyAquatic ScienceBiologyTrade-off010603 evolutionary biology01 natural sciencesLife history theory03 medical and health sciencesAnimalsHumansMolecular BiologyPolygynyLife History TraitsEcology Evolution Behavior and Systematics030304 developmental biologymedia_common0303 health sciencesTemnothorax rugatulusved/biologyAntsReproductionLongevityFecundityEusocialityFertilityInsect ScienceAnimal Science and ZoologyFemaleSocial evolutionThe Journal of experimental biology
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Why do house-hunting ants recruit in both directions?

2007

8 pages; International audience; To perform tasks, organisms often use multiple procedures. Explaining the breadth of such behavioural repertoires is not always straightforward. During house hunting, colonies of Temnothorax albipennis ants use a range of behaviours to organise their emigrations. In particular, the ants use tandem running to recruit na? ants to potential nest sites. Initially, they use forward tandem runs (FTRs) in which one leader takes a single follower along the route from the old nest to the new one. Later, they use reverse tandem runs (RTRs) in the opposite direction. Tandem runs are used to teach active ants the route between the nests, so that they can be involved qui…

0106 biological sciencesMESH: Decision MakingOperations researchTemnothorax albipennisMESH : Social BehaviorTandem runningSocial insectsMESH : Behavior Animal01 natural sciencesNesting BehaviorNestMESH : EcosystemMESH: Behavior Animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: AnimalsMESH: EcosystemMESH: Nesting BehaviorRecruitment methodsMESH: Models Theoretical0303 health sciencesBehavior AnimalbiologyEcologyGeneral MedicineMESH : AntsCollective behaviourMESH: Social BehaviorTandem runningMESH: Population DensityDecision MakingMESH: AntsMESH : Nesting Behavior010603 evolutionary biology03 medical and health sciencesAnimalsTemnothorax albipennisMESH : Population DensitySocial BehaviorSet (psychology)EcosystemEcology Evolution Behavior and Systematics030304 developmental biologyPopulation DensityOriginal PaperAntsMESH : Models TheoreticalModels TheoreticalRecruitment methodsbiology.organism_classificationMESH : Decision MakingMESH : Animals[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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2021

Social insects are hosts of diverse parasites, but the influence of these parasites on phenotypic host traits is not yet well understood. Here, we tracked the survival of tapeworm-infected ant workers, their uninfected nest-mates and of ants from unparasitized colonies. Our multi-year study on the ant Temnothorax nylanderi, the intermediate host of the tapeworm Anomotaenia brevis, revealed a prolonged lifespan of infected workers compared with their uninfected peers. Intriguingly, their survival over 3 years did not differ from those of (uninfected) queens, whose lifespan can reach two decades. By contrast, uninfected workers from parasitized colonies suffered from increased mortality comp…

0106 biological sciencesTapeworm infection0303 health sciencesMultidisciplinaryTemnothorax nylanderived/biologyHost (biology)ved/biology.organism_classification_rank.speciesIntermediate hostZoologyBiologymedicine.disease010603 evolutionary biology01 natural sciencesANT03 medical and health sciencesLipid contentmedicineMetabolic rateSocial care030304 developmental biologyRoyal Society Open Science
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Parasitism and queen presence interactively shape worker behaviour and fertility in an ant host

2019

Parasites with complex life cycles regularly alter host traits in their own interest. In social hosts, phenotypic alterations induced by parasites can also affect uninfected group members. The tapeworm Anomotaenia brevis uses Temnothorax nylanderi ants as intermediate hosts, reducing host activity and behavioural repertoire, but increasing life span. Uninfected nestmates are less active and less aggressive and suffer from higher mortality. Next to parasites, the social environment, such as the queen, influences worker behaviour, reproduction and longevity. Here, we studied how tapeworm parasitism interacts with the queen to affect the behaviour and reproductive potential of ant workers. We …

0106 biological sciencesTemnothorax nylanderiHost (biology)ved/biologymedia_common.quotation_subject05 social sciencesved/biology.organism_classification_rank.speciesLongevityOvary (botany)ZoologyParasitismFertilityBiology010603 evolutionary biology01 natural sciencesANT0501 psychology and cognitive sciencesAnimal Science and Zoology050102 behavioral science & comparative psychologyReproductionEcology Evolution Behavior and Systematicsmedia_commonAnimal Behaviour
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Comparative analyses of caste, sex, and developmental stage‐specific transcriptomes in two Temnothorax ants

2020

Abstract Social insects dominate arthropod communities worldwide due to cooperation and division of labor in their societies. This, however, makes them vulnerable to exploitation by social parasites, such as slave‐making ants. Slave‐making ant workers pillage brood from neighboring nests of related host ant species. After emergence, host workers take over all nonreproductive colony tasks, whereas slavemakers have lost the ability to care for themselves and their offspring. Here, we compared transcriptomes of different developmental stages (larvae, pupae, and adults), castes (queens and workers), and sexes of two related ant species, the slavemaker Temnothorax americanus and its host Temnoth…

0106 biological sciencesZoologydevelopmental stagesBiology010603 evolutionary biology01 natural sciences590 Tiere (Zoologie)transcriptomics03 medical and health sciencescasteddc:590lcsh:QH540-549.5Ecology Evolution Behavior and Systematics030304 developmental biologyNature and Landscape Conservation0303 health sciencesLarvaEcologyTemnothoraxHost (biology)fungiInterspecific competitionTemnothorax americanusbiology.organism_classificationBroodPupagene expressionslave‐making antsddc:590lcsh:Ecologycaste developmental stages gene expression slave-making ants transcriptomicsArthropodEcology and Evolution
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The Drosophila Hox gene Ultrabithorax acts both in muscles and motoneurons to orchestrate formation of specific neuromuscular connections

2016

Hox genes are known to specify motoneuron pools in the developing vertebrate spinal cord and to control motoneuronal targeting in several species. However, the mechanisms controlling axial diversification of muscle innervation patterns are still largely unknown. We present data showing that the Drosophila Hox gene Ultrabithorax (Ubx) acts in the late embryo to establish target specificity of ventrally projecting RP motoneurons. In abdominal segments A2 to A7, RP motoneurons innervate the ventrolateral muscles VL1-4, with VL1 and VL2 being innervated in a Wnt4-dependent manner. In Ubx mutants, these motoneurons fail to make correct contacts with muscle VL1, a phenotype partially resembling t…

0301 basic medicineCell typeEmbryo Nonmammaliananimal structuresNeuromuscular JunctionGenes InsectMuscle DevelopmentNeuromuscular junctionAnimals Genetically ModifiedHox genes03 medical and health sciencesWNT4MorphogenesismedicineAnimalsDrosophila ProteinsHox geneWnt Signaling PathwayMolecular BiologyTranscription factorUltrabithoraxHomeodomain ProteinsMotor NeuronsGeneticsbiologyMusclesmusculoskeletal neural and ocular physiologyfungiGenes HomeoboxGene Expression Regulation Developmentalbiology.organism_classificationMuscle innervationSegmental patterningCell biologyMotoneuronsDrosophila melanogaster030104 developmental biologymedicine.anatomical_structurenervous system209embryonic structuresDrosophilaWnt signalling pathwayDrosophila melanogasterDrosophila ProteinTranscription FactorsResearch ArticleDevelopmental BiologyDevelopment
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Gene expression profiles uncover individual identities of gnathal neuroblasts and serial homologies in the embryonic CNS of Drosophila.

2015

The numbers and types of progeny cells generated by neural stem cells in the developing CNS are adapted to its region-specific functional requirements. In Drosophila, segmental units of the CNS develop from well-defined patterns of neuroblasts. Here we constructed comprehensive neuroblast maps for the three gnathal head segments. Based on the spatiotemporal pattern of neuroblast formation and the expression profiles of 46 marker genes (41 transcription factors), each neuroblast can be uniquely identified. Compared with the thoracic ground state, neuroblast numbers are progressively reduced in labial, maxillary and mandibular segments due to smaller sizes of neuroectodermal anlagen and, part…

0301 basic medicineCentral Nervous SystemGenetic Markersanimal structuresSerial homologyCell CountGenes InsectBiology03 medical and health sciences0302 clinical medicineNeuroblastNeural Stem CellsNeuroblastsAbdomenAnimalsCell LineageHox geneMolecular Biologyreproductive and urinary physiologyfungiAnatomyThoraxGene expression profileNeuromereStem Cells and RegenerationEmbryonic stem cellNeural stem cellCell biology103Segmental patterning030104 developmental biologyDrosophila melanogasternervous systemVentral nerve cordDrosophila brainembryonic structuresDeformedTranscriptomeGanglion mother cell030217 neurology & neurosurgeryDevelopmental BiologyDevelopment (Cambridge, England)
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