Search results for "katydid"

showing 5 items of 5 documents

Tettigoniidae (Orthoptera) ovipositing in old galls of Dryocosmus kuriphilus (Hymenoptera: Cynipidae)

2016

Authors report some biological notes on two species of Orthoptera Tettigoniidae emerged from old spongy-woody galls of Dryocosmus kuriphilus Yasumatsu, 1951 collected in April 2015 from some areas of Sicily (Italy): Leptophyes sicula Kleukers, Odé et Fontana, 2010 (Phaneropterinae) and Cyrtaspis scutata (Charpentier, 1825) (Meconematinae). Between the end of April and the first days of May 30 neanids emerged from the galls, were reared and their cycle followed. While L. sicula laid eggs in groups, C. scutata laid single eggs inside the galls; both species have shown that in a few years they adapted in exploiting this new shelter for egg laying. No interaction with the gall inducing insect w…

0106 biological sciencesfood.ingredientOrthopteraorthopteraTettigoniidae010607 zoologyHymenoptera01 natural sciencesfoodgall-successoritalyBotanytettigoniidaeMeconematinaebush-cricketsgall biology successor katydid ItalybiologybiologyLeptophyesbiology.organism_classification010602 entomologyDryocosmus kuriphilusSettore AGR/11 - Entomologia Generale E ApplicataQL1-991Insect SciencehymenopteraGall-inducing insectcynipidaePhaneropterinaeovipositionZoologyEuropean Journal of Entomology
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High-speed duetting - latency times of the female acoustic response within the bush-cricket genera

2018

Abstract To find a mate, male and female bush-crickets of the family Phaneropteridae typically engage in duets. The male sings and the female responds. For mutual recognition, the amplitude pattern of the male song and the species-specific timing of the female response have been shown to be very important. In the seven studied species, belonging to the genera Leptophyes and Andreiniimon, these duets are extremely fast and nearly completely in the ultrasonic range. The females produce very short sounds by fast closing movements of the tegmina. They respond with species-specific delays of 20 to 150 ms after the beginning of the male song. The different latency times are probably not important…

Evolutionary BiologyInsectaArthropodaHexapodaduetTettigoniideafemale acoustic signalsEuropeEnsiferakatydidPhaneropterinaeAnimaliaOrthopteraNeogenePhaneropteridaeInvertebrataResearch Articlestridulatory movementZooKeys
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The protective value of a defensive display varies with the experience of wild predators

2019

AbstractPredation has driven the evolution of diverse adaptations for defence among prey, and one striking example is the deimatic display. While such displays can resemble, or indeed co-occur with, aposematic ‘warning’ signals, theory suggests deimatic displays may function independently of predator learning. The survival value of deimatic displays against wild predators has not been tested before. Here we used the mountain katydid Acripeza reticulata to test the efficacy of a putative deimatic display in the wild. Mountain katydids have a complex defence strategy; they are camouflaged at rest, but reveal a striking red-, blue-, and black-banded abdomen when attacked. We presented live kat…

0301 basic medicineValue (ethics)Allopatric speciationZoologylcsh:MedicineAposematismeläinten käyttäytyminenArticlePredationGryllidae03 medical and health sciences0302 clinical medicineAnimalspuolustusmekanismit (biologia)Australian magpielcsh:SciencePredatorMultidisciplinaryBehavior Animaldefensive displaybiologylcsh:RAustraliabehavioural ecologyhepokatitbiology.organism_classificationkatydids030104 developmental biologySympatric speciationPredatory BehaviorPredator attacklcsh:Q030217 neurology & neurosurgeryScientific Reports
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Revision of the Afrotropical genus Leiodontocercus (Orthoptera, Tettigoniidae, Phaneropterinae) with a description of four new species

2020

Specimens belonging to the genus Leiodontocercus are rare or even absent in natural history museum collections; this is likely due to at least two reasons, notably, their relatively small size, and, the sheer difficulty in finding them in dense Afrotropical forests. Until recently, three species from less than fifteen specimens were known from this genus, whose identification relied on a singular diagnostic character, that is, the shape of the male cerci. The present contribution is based on the examination of thirty specimens collected from various countries, ranging from central to west Africa; apart from the male cerci, a second diagnostic character – the stridulatory file – is used to d…

0106 biological sciencesCentral and West AfricaInsectaPleistoceneArthropodaOrthopteraTettigoniidae010607 zoologyZoology010603 evolutionary biology01 natural sciencestaxonomyAdaptive radiationlcsh:ZoologyTettigoniidaeIce ageAnimaliaLeiodontocercuslcsh:QL1-991Ecology Evolution Behavior and Systematicsnew speciesbiologyCentral and West Africa leaf katydids new species speciation taxonomyCentral africabiology.organism_classificationTettigonioidealeaf katydidsGeographyspeciationOrthopteraAnimal Science and ZoologyTaxonomy (biology)PhaneropterinaeResearch Article
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High-speed duetting-latency times of the female acoustic response within the bush-cricket genera Leptophyes and Andreiniimon (Orthoptera, Phaneropter…

2018

To find a mate, male and female bush-crickets of the family Phaneropteridae typically engage in duets. The male sings and the female responds. For mutual recognition, the amplitude pattern of the male song and the species-specific timing of the female response have been shown to be very important. In the seven studied species, belonging to the generaLeptophyesandAndreiniimon, these duets are extremely fast and nearly completely in the ultrasonic range. The females produce very short sounds by fast closing movements of the tegmina. They respond with species-specific delays of 20 to 150 ms after the beginning of the male song. The different latency times are probably not important for species…

0106 biological sciencesInsectafood.ingredientArthropodaRange (biology)OrthopteraPhaneropteridae010607 zoologyZoologyduetAndreiniimon010603 evolutionary biology01 natural sciencesfemale acoustic signalsfoodPhaneropterinae katydid female acoustic signals duet stridulatory movementCricketTettigoniidaelcsh:ZoologyPhaneropterinaeAnimalialcsh:QL1-991Latency (engineering)Ecology Evolution Behavior and Systematicsstridulatory movementLeptophyesbiologyLeptophyesbiology.organism_classificationTettigonioideaSettore AGR/11 - Entomologia Generale E ApplicataSympatric speciationkatydidOrthopteraAnimal Science and ZoologyPhaneropterinae
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