Motion-triggered defensive display in a tephritid fly
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  • 作者:Samuel Aguilar-Arg眉ello ; Francisco D铆az-Fleischer ; Dinesh Rao
  • 关键词:Supination ; Jumping spiders ; Aggressive behaviour ; Anastrepha ludens
  • 刊名:Journal of Ethology
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:34
  • 期:1
  • 页码:31-37
  • 全文大小:481 KB
  • 参考文献:Agresti A (2007) An introduction to categorical data analysis. Wiley, New JerseyCrossRef
    Bakeman R, Gottman JM (1986) Observing interaction. An introduction to sequential analysis. Cambridge University Press, Cambridge
    Bakeman R, Robinson BF (1994) Understanding log-linear analysis with ILOG: An interactive approach. Erlbaum, Hillsdale
    Benelli G (2013) Aggressive behavior and territoriality in the olive fruit fly, Bactrocera oleae (Rossi) (Diptera: Tephritidae): Role of residence and time of day. J Insect Behav 27:145鈥?61CrossRef
    Benelli G (2015) Aggression in Tephritidae flies: where, when, why? Future directions for research in integrated pest management. Insects 6:38鈥?3PubMedCentral CrossRef
    Benelli G, Daane KM, Canale A, Niu C-Y, Messing RH, Vargas RI (2014) Sexual communication and related behaviours in Tephritidae: current knowledge and potential applications for integrated pest management. J Pest Sci 87:385鈥?05CrossRef
    Blumstein DT, Daniel JC (2007) Quantifying behavior the JWatcher way. Sinauer Associates, Sunderland
    Bond AB (2007) The evolution of color polymorphism: crypticity, searching images, and apostatic selection. Annu Rev Ecol Sys 38:489鈥?14CrossRef
    Briceno R, Ramos D, Eberhard W (1999) Aggressive behavior in medflies (Ceratitis capitata) and its modification by mass rearing (Diptera: Tephritidae). J Kans Ent Soc 1:17鈥?7
    Caro T (1995) Pursuit-deterrence revisited. TREE 10:500鈥?03PubMed
    Crawley R (1993) GLIM for ecologists. Blackwell Scientific, Oxford
    Edwards GB (2004) Revision of the jumping spiders of the genus Phidippus (Araneae: Salticidae). Occ Pap Fla Sta Coll Arth 11:1鈥?18
    Eisner T (1985) A fly that mimics jumping spiders. Psyche 92:103鈥?04CrossRef
    Elias DO, Land BR, Mason AC, Hoy RR (2006) Measuring and quantifying dynamic visual signals in jumping spiders. J Comp Physiol A 192:785鈥?97CrossRef
    Godin J, Davis S (1995) Who dares, benefits: predator approach behaviour in the Guppy (Poecilia reticulata) deters predator pursuit. Proc R Soc B 259:193鈥?00CrossRef
    Greene E, Orsak L, Whitman D (1987) A tephritid fly mimics the territorial displays of its jumping spider predators. Science 236:310鈥?12CrossRef PubMed
    Hasson O (1995) A fly in spider鈥檚 clothing: what size the spider? Proc R Soc B 261:223鈥?26CrossRef
    Headrick DH, Goeden RD (1994) Reproductive behavior of California fruit flies and the classification and evolution of Tephritidae (Diptera) mating systems. Stud Dipterol 1:194鈥?52
    Hemmi JH, Pfeil A (2010) A multi-stage anti-predator response increases information on predation risk. J Exp Biol 213:1484鈥?489CrossRef PubMed
    Jackson RR (1977) Prey of the jumping spider Phidippus johnsoni (Araneae: Salticidae). J Arachnol 5:145鈥?49
    Mather MH, Roitberg BD (1987) A sheep in wolf鈥檚 clothing: tephritid flies mimic spider predators. Science 236:308鈥?10CrossRef PubMed
    Murphy T (2006) Predator-elicited visual signal: why the turquoise
    owed motmot wag-displays its racketed tail. Behav Ecol 17(4):547鈥?53CrossRef
    Rao D, D铆az-Fleischer F (2012) Characterisation of predator-directed displays in tephritid flies. Ethology 118:1165鈥?172CrossRef
    Rundus A, Owings D, Joshi S, Chinn E, Giannini N (2007) Ground squirrels use an infrared signal to deter rattlesnake predation. PNAS 104:14372鈥?4376PubMedCentral CrossRef PubMed
    Ruxton G, Sherratt TN, Speed MP (2004) Avoiding attack: The evolutionary ecology of crypsis, warning signs and mimicry. Oxford University Press, New YorkCrossRef
    Sivinski J, Pereira R (2005) Do wing markings in fruit flies (Diptera: Tephritidae) have sexual significance? Fla Entomol 88:321鈥?24CrossRef
    Tan K, Wang Z, Li H, Yang S, Hu Z et al (2012) An 鈥業 see you鈥?prey鈥損redator signal between the Asian honeybee, Apis cerana, and the hornet, Vespa velutina. Anim Behav 83:879鈥?82CrossRef
    Tejeda MT, Arredondo J, P茅rez-Staples DF, Ramos-Morales P, Liedo P, D铆az-Fleischer F (2014) Effects of size, sex and teneral resources on the resistance to hydric stress in the tephritid fruit fly Anastrepha ludens. J Insect Physiol 70:73鈥?0CrossRef PubMed
    Worthington AM, Swallow JG (2010) Gender differences in survival and antipredatory behavior in stalk-eyed flies. Behav Ecol 21:759鈥?66CrossRef
    Zahavi A, Zahavi A (1997) The handicap principle. Oxford University Press, Oxford
  • 作者单位:Samuel Aguilar-Arg眉ello (1) (2)
    Francisco D铆az-Fleischer (1)
    Dinesh Rao (1)

    1. Inbioteca, Universidad Veracruzana, Av. Culturas Veracruzanas No.101, Col. E. Zapata, 91090, Xalapa, VER, Mexico
    2. Instituto de Ecolog铆a, A.C, Apartado Postal 63, 91000, Xalapa, VER, Mexico
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Zoology
    Behavioural Sciences
    Animal Ecology
    Evolutionary Biology
    Neurosciences
  • 出版者:Springer Japan
  • ISSN:1439-5444
文摘
Interactions between prey and predators are often mediated by signals sent by the prey. Passive signals such as aposematic coloration and active signals such as pursuit deterrence signals are thought to prevent attack from predators. In true fruit flies (Diptera: Tephritidae), the defensive wing display is called supination, and studies have shown that supination effectively reduces the chance of being attacked by salticid predators. In this study, we investigated the proximal causes of supination in staged interactions in an arena. We asked whether the movement of the display target influences the likelihood of triggering supination in the Mexican fruit fly Anastrepha ludens. We tested the effect of motion on fly display in three different ways using (1) a manually moved dead spider or beetle, (2) live bouts with a spider and a katydid and (3) video playback experiments where movement of the display target was controlled. Our results show that flies are more likely to perform supination when the display target moves. The identity of the display target did not influence display propensity, suggesting that the supination of flies is a generalised display behaviour against any possible threat. Keywords Supination Jumping spiders Aggressive behaviour Anastrepha ludens

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