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非消费性捕食者 - 猎物相互作用:腐食性跳虫弯角棘跳虫(弹尾目:长角跳虫科)对狼蛛豹蛛(蜘蛛目:狼蛛科)捕食风险信号的敏感性

Nonconsumptive Predator-Prey Interactions: Sensitivity of the Detritivore Sinella curviseta (Collembola: Entomobryidae) to Cues of Predation Risk From the Spider Pardosa milvina (Araneae: Lycosidae).

作者信息

Sitvarin Michael I, Romanchek Christian, Rypstra Ann L

机构信息

Department of Entomology, University of Kentucky, S-225 Agricultural Science Center North, Lexington, KY 4054 and Department of Biology, Miami University, 700 E High St., Oxford, OH 45056. Department of Entomology, University of Kentucky, S-225 Agricultural Science Center North, Lexington, KY 40546.

Department of Entomology, University of Kentucky, S-225 Agricultural Science Center North, Lexington, KY 4054 and Department of Biology, Miami University, 700 E High St., Oxford, OH 45056.

出版信息

Environ Entomol. 2015 Apr;44(2):349-55. doi: 10.1093/ee/nvv011. Epub 2015 Mar 16.

Abstract

Predators can affect prey indirectly when prey respond to cues indicating a risk of predation by altering activity levels. Changes in prey behavior may cascade through the food web to influence ecosystem function. The response of the collembolan Sinella curviseta Brook (Collembola: Entomobryidae) to cues indicating predation risk (necromones and cues from the wolf spider Pardosa milvina (Hentz) (Araneae: Lycosidae)) was tested. Additionally, necromones and predator cues were paired in a conditioning experiment to determine whether the collembolan could form learned associations. Although collembolans did not alter activity levels in response to predator cues, numerous aspects of behavior differed in the presence of necromones. There was no detectable conditioned response to predator cues after pairing with necromones. These results provide insight into how collembolans perceive and respond to predation threats that vary in information content. Previously detected indirect impacts of predator cues on ecosystem function are likely due to changes in prey other than activity level.

摘要

当猎物通过改变活动水平对表明捕食风险的线索做出反应时,捕食者会对猎物产生间接影响。猎物行为的变化可能会在食物网中引发连锁反应,从而影响生态系统功能。本研究测试了弹尾虫弯角棘跳虫(Sinella curviseta Brook,弹尾目:长角跳虫科)对表明捕食风险的线索(尸体信息素以及狼蛛豹蛛(Pardosa milvina (Hentz),蜘蛛目:狼蛛科)的线索)的反应。此外,在一项条件作用实验中,将尸体信息素和捕食者线索配对,以确定弹尾虫是否能形成学习关联。虽然弹尾虫不会因捕食者线索而改变活动水平,但在有尸体信息素的情况下,其行为的许多方面存在差异。在与尸体信息素配对后,未检测到对捕食者线索的条件反应。这些结果有助于深入了解弹尾虫如何感知和应对信息含量不同的捕食威胁。先前检测到的捕食者线索对生态系统功能的间接影响可能是由于猎物活动水平以外的其他变化所致。

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