Search results for "Crematogaster"

showing 8 items of 8 documents

The evolution of a complex trait: cuticular hydrocarbons in ants evolve independent from phylogenetic constraints.

2016

Cuticular hydrocarbons (CHCs) are ubiquitous and highly diverse in insects, serving as communication signal and waterproofing agent. Despite their vital function, the causes, mechanisms and constraints on CHC diversification are still poorly understood. Here, we investigated phylogenetic constraints on the evolution of CHC profiles, using a global data set of the species-rich and chemically diverse ant genus Crematogaster. We decomposed CHC profiles into quantitative (relative abundances, chain length) and qualitative traits (presence/absence of CHC classes). A species-level phylogeny was estimated using newly generated and previously published sequences from five nuclear markers. Moreover,…

0106 biological sciences0301 basic medicineCrematogasterAlkenes010603 evolutionary biology01 natural sciences03 medical and health sciencesGenusPhylogeneticsAnimalsTaxonomic rankCladeEcology Evolution Behavior and SystematicsPhylogenyPhylogenetic treebiologyEcologyAntsbiology.organism_classificationPhenotypeBiological EvolutionHydrocarbons030104 developmental biologyPhenotypeEvolutionary biologyFunction (biology)Journal of evolutionary biology
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2019

Abstract The success of social insects is largely intertwined with their highly advanced chemical communication system that facilitates recognition and discrimination of species and nest-mates, recruitment, and division of labor. Hydrocarbons, which cover the cuticle of insects, not only serve as waterproofing agents but also constitute a major component of this communication system. Two cryptic Crematogaster species, which share their nest with Camponotus ants, show striking diversity in their cuticular hydrocarbon (CHC) profile. This mutualistic system therefore offers a great opportunity to study the genetic basis of CHC divergence between sister species. As a basis for further genome-wi…

0106 biological sciences0303 health sciencesElongaseCrematogasterHybrid genome assemblyHymenopteraBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesGenomeANT03 medical and health sciencesNestEvolutionary biologyGeneticsGeneEcology Evolution Behavior and Systematics030304 developmental biologyGenome Biology and Evolution
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Cuticular hydrocarbons as potential mediators of cryptic species divergence in a mutualistic ant association

2019

International audience; Upon advances in sequencing techniques, more and more morphologically identical organisms are identified as cryptic species. Often, mutualistic interactions are proposed as drivers of diversification. Species of the neotropical parabiotic ant association between Crematogaster levior and Camponotus femoratus are known for highly diverse cuticular hydrocarbon (CHC) profiles, which in insects serve as desiccation barrier but also as communication cues. In the present study, we investigated the association of the ants' CHC profiles with genotypes and morphological traits, and discovered cryptic species pairs in both genera. To assess putative niche differentiation betwee…

0106 biological sciencesSpecies complexCrematogastermedia_common.quotation_subjectNicheBiologyenvironmental association010603 evolutionary biology01 natural sciences03 medical and health scienceslcsh:QH540-549.5sexual selectionEcology Evolution Behavior and Systematicsintegrative taxonomy030304 developmental biologyNature and Landscape Conservationmedia_commonOriginal ResearchEcological niche0303 health sciencesEcologyAssortative matingNiche differentiationpopulation structure15. Life on landbiology.organism_classificationniche differentiationSpeciationspeciationSympatric speciationEvolutionary biologylcsh:Ecology[SDE.BE]Environmental Sciences/Biodiversity and EcologyEcology and Evolution
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Data from: Cuticular hydrocarbons as potential mediators of cryptic species divergence in a mutualistic ant association

2019

Upon advances in sequencing techniques, more and more morphologically identical organisms are identified as cryptic species. Often, mutualistic interactions are proposed as drivers of diversification. Species of the Neotropical parabiotic ant association between Crematogaster levior and Camponotus femoratus are known for highly diverse cuticular hydrocarbon (CHC) profiles, which in insects serve as desiccation barrier but also as communication cues. In the present study we investigated the association of the ants’ CHC profiles to genotypes and morphological traits, and discovered cryptic species pairs in both genera. To assess putative niche differentiation between the cryptic species, we c…

Crematogaster leviorcytochrome c oxidase subunit ICamponotus femoratusBarcoding
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2013

Parasitic, commensalistic, and mutualistic guests in social insect colonies often circumvent their hosts’ nestmate recognition system to be accepted. These tolerance strategies include chemical mimicry and chemical insignificance. While tolerance strategies have been studied intensively in social parasites, little is known about these mechanisms in non-parasitic interactions. Here, we describe a strategy used in a parabiotic association, i.e. two mutualistic ant species that regularly share a common nest although they have overlapping food niches. One of them, Crematogaster modiglianii, produces an array of cuticular compounds which represent a substance class undescribed in nature so far. …

Crematogasterbiologymedia_common.quotation_subjectZoologyInterspecific competitionInsectbiology.organism_classificationANTCompetition (biology)NestAnimal Science and ZoologyIdentification (biology)Chemical mimicryEcology Evolution Behavior and Systematicsmedia_commonFrontiers in Zoology
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Dinner with the roommates: trophic niche differentiation and competition in a mutualistic ant‐ant association

2020

1. The potential for competition is highest among species in close association. Despite net benefits for both parties, mutualisms can involve costs, including food competition. This might be true for the two neotropical ants Camponotus femoratus and Crematogaster levior, which share the same nest in a presumably mutualistic association (parabiosis). 2. While each nest involves one Crematogaster and one Camponotus partner, both taxa were recently found to comprise two cryptic species that show no partner preferences and seem ecologically similar. Since these cryptic species often occur in close sympatry, they might need to partition their niches to avoid competitive exclusion. 3. Here, we in…

Ecological nicheSpecies complexCrematogasterEcologybiologyEcologymedia_common.quotation_subjectNicheNiche differentiationSpecies diversitybiology.organism_classificationCompetition (biology)570 Life sciencesInsect Scienceddc:570570 Biowissenschaftenmedia_commonTrophic level
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Data from: How do cuticular hydrocarbons evolve? Physiological constraints and climatic and biotic selection pressures act on a complex functional tr…

2016

Cuticular hydrocarbons (CHCs) cover the cuticles of virtually all insects, serving as a waterproofing agent and as a communication signal. The causes for the high CHC variation between species, and the factors influencing CHC profiles, are scarcely understood. Here, we compare CHC profiles of ant species from seven biogeographic regions, searching for physiological constraints and for climatic and biotic selection pressures. Molecule length constrained CHC composition: long-chain profiles contained fewer linear alkanes, but more hydrocarbons with disruptive features in the molecule. This is probably owing to selection on the physiology to build a semi-fluid cuticular layer, which is necessa…

medicine and health careCamponotusphysiological constraintselection pressureviscosityfungiclimatic nicheMedicineCrematogasterwater loss rateLife sciences
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Data from: The evolution of a complex trait: cuticular hydrocarbons in ants evolve independent from phylogenetic constraints

2017

Cuticular hydrocarbons (CHC) are ubiquitous and highly diverse in insects, serving as communication signal and waterproofing agent. Despite their vital function, the causes, mechanisms and constraints on CHC diversification are still poorly understood. Here, we investigated phylogenetic constraints on the evolution of CHC profiles, using a global dataset of the species-rich and chemically diverse ant genus Crematogaster. We decomposed CHC profiles into quantitative (relative abundances, chain length) and qualitative traits (presence/absence of CHC classes). A species-level phylogeny was estimated using newly generated and previously published sequences from five nuclear markers. Moreover, w…

medicine and health carepheromonesaltational evolutionCrematogaster leviorLife SciencesMedicinegradual evolutionCrematogaster
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