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一种特殊捕食者对其猎物种内化学信号的选择性嗅觉关注。

Selective olfactory attention of a specialised predator to intraspecific chemical signals of its prey.

作者信息

Cárdenas Manuel, Jiroš Pavel, Pekár Stano

机构信息

Department of Botany and Zoology, Masaryk University, Kotlářská 2, 61 137, Brno, Czech Republic.

出版信息

Naturwissenschaften. 2012 Aug;99(8):597-605. doi: 10.1007/s00114-012-0938-9. Epub 2012 Jul 4.

Abstract

Prey-specialised predators have evolved specific cognitive adaptations that increase their prey searching efficiency. In particular, when the prey is social, selection probably favours the use of prey intraspecific chemical signals by predatory arthropods. Using a specialised ant-eating zodariid spider, Zodarion rubidum, which is known to prey on several ant species and possesses capture and venom adaptations more effective on Formicinae ants, we tested its ability to recognise chemical cues produced by several ant species. Using an olfactometer, we tested the response of Z. rubidum towards air with chemical cues from six different ant species: Camponotus ligniperda, Lasius platythorax and Formica rufibarbis (all Formicinae); and Messor structor, Myrmica scabrinodis and Tetramorium caespitum (all Myrmicinae). Z. rubidum was attracted to air carrying chemical cues only from F. rufibarbis and L. platythorax. Then, we identified that the spiders were attracted to airborne cues coming from the F. rufibarbis gaster and Dufour's gland, in particular. Finally, we found that among several synthetic blends, the decyl acetate and undecane mixture produced significant attraction of spiders. These chemicals are produced only by three Formicine genera. Furthermore, we investigated the role of these chemical cues in the communication of F. rufibarbis and found that this blend reduces their movement. This study demonstrates the chemical cognitive capacity of Z. rubidum to locate its ant prey using chemical signals produced by the ants. The innate capacity of Z. rubidum to olfactory detect different ant species is narrow, as it includes only two ant genera, confirming trophic specialisation at lower than subfamily level. The olfactory cue detected by Zodarion spiders is probably a component of the recruitment or trail pheromone.

摘要

猎物特化的捕食者已经进化出特定的认知适应性,以提高它们的猎物搜索效率。特别是,当猎物是社会性动物时,选择可能有利于捕食性节肢动物利用猎物的种内化学信号。我们使用一种专门捕食蚂蚁的毒蛛科蜘蛛——红棕遁蛛(Zodarion rubidum),已知它捕食多种蚂蚁物种,并且对蚁亚科蚂蚁具有更有效的捕获和毒液适应性,我们测试了它识别几种蚂蚁物种产生的化学线索的能力。我们使用嗅觉计,测试了红棕遁蛛对来自六种不同蚂蚁物种化学线索的空气的反应:木蚁(Camponotus ligniperda)、扁胸蚁(Lasius platythorax)和红褐林蚁(Formica rufibarbis)(均为蚁亚科);以及收获蚁(Messor structor)、皱叶蚁(Myrmica scabrinodis)和草地铺道蚁(Tetramorium caespitum)(均为切叶蚁亚科)。红棕遁蛛只被携带来自红褐林蚁和扁胸蚁化学线索的空气所吸引。然后,我们确定蜘蛛特别被来自红褐林蚁腹部和杜氏腺的空气传播线索所吸引。最后,我们发现,在几种合成混合物中,乙酸癸酯和十一烷的混合物对蜘蛛产生了显著的吸引力。这些化学物质仅由三个蚁亚科属产生。此外,我们研究了这些化学线索在红褐林蚁交流中的作用,发现这种混合物会减少它们的活动。这项研究证明了红棕遁蛛利用蚂蚁产生的化学信号定位其蚂蚁猎物的化学认知能力。红棕遁蛛嗅觉检测不同蚂蚁物种的先天能力很窄,因为它只包括两个蚂蚁属,证实了低于亚科水平的食性特化。遁蛛属蜘蛛检测到的嗅觉线索可能是招募或追踪信息素的一个组成部分。

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