collective defense of aphis nerii and uroleucon hypochoeridis (homoptera, aphididae) against natural enemies集体防御的蚜虫nerii和uroleucon hypochoeridis对天敌(同翅目,蚜科).pdfVIP

collective defense of aphis nerii and uroleucon hypochoeridis (homoptera, aphididae) against natural enemies集体防御的蚜虫nerii和uroleucon hypochoeridis对天敌(同翅目,蚜科).pdf

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collective defense of aphis nerii and uroleucon hypochoeridis (homoptera, aphididae) against natural enemies集体防御的蚜虫nerii和uroleucon hypochoeridis对天敌(同翅目,蚜科)

Collective Defense of Aphis nerii and Uroleucon hypochoeridis (Homoptera, Aphididae) against Natural Enemies Manfred Hartbauer* Behavioural Ecology Group, Department of Zoology, Karl-Franzens University Graz, Graz, Austria Abstract The prevalent way aphids accomplish colony defense against natural enemies is a mutualistic relationship with ants or the occurrence of a specialised soldier caste typcial for eusocial aphids, or even both. Despite a group-living life style of those aphid species lacking these defense lines, communal defense against natural predators has not yet been observed there. Individuals of Aphis nerii (Oleander aphid) and Uroleucon hypochoeridis, an aphid species feeding on Hypochoeris radicata (hairy cat’s ear), show a behavioral response to visual stimulation in the form of spinning or twitching, which is often accompanied by coordinated kicks executed with hind legs. Interestingly, this behaviour is highly synchronized among members of a colony and repetitive visual stimulation caused strong habituation. Observations of natural aphid colonies revealed that a collective twitching and kicking response (CTKR) was frequently evoked during oviposition attempts of the parasitoid wasp Aphidius colemani and during attacks of aphidophagous larvae. CTKR effectively interrupted oviposition attempts of this parasitoid wasp and even repelled this parasitoid from colonies after evoking consecutive CTKRs. In contrast, solitary feeding A. nerii individuals were not able to successfully repel this parasitoid wasp. In addition, CTKR was also evoked through gentle substrate vibrations. Laser vibrometry of the substrate revealed twitching-associated vibrations that form a train of sharp acceleration peaks in the course of a CTKR. This suggests that visual signals in combination with twitching-related substr

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