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杯子还没有半满:搅动而非杀螨剂处理会导致蜜蜂产生认知偏差。

The glass is not yet half empty: agitation but not Varroa treatment causes cognitive bias in honey bees.

作者信息

Schlüns Helge, Welling Helena, Federici Julian René, Lewejohann Lars

机构信息

Department of Behavioral Biology, University of Osnabrueck, Barbarastr. 11, 49076, Osnabrück, Germany.

出版信息

Anim Cogn. 2017 Mar;20(2):233-241. doi: 10.1007/s10071-016-1042-x. Epub 2016 Oct 3.

Abstract

Honey bees (Apis mellifera) are prone to judge an ambiguous stimulus negatively if they had been agitated through shaking which simulates a predator attack. Such a cognitive bias has been suggested to reflect an internal emotional state analogous to humans who judge more pessimistically when they do not feel well. In order to test cognitive bias experimentally, an animal is conditioned to respond to two different stimuli, where one is punished while the other is rewarded. Subsequently a third, ambiguous stimulus is presented and it is measured whether the subject responds as if it expects a reward or a punishment. Generally, it is assumed that negative experiences lower future expectations, rendering the animals more pessimistic. Here we tested whether a most likely negatively experienced formic acid treatment against the parasitic mite Varroa destructor also affects future expectations of honey bees. We applied an olfactory learning paradigm (i.e., conditioned proboscis extension response) using two odorants and blends of these odorants as the ambiguous stimuli. Unlike agitating honey bees, exposure to formic acid did not significantly change the response to the ambiguous stimuli in comparison with untreated bees. Overall evidence suggests that the commonest treatment against one of the most harmful bee pests has no detrimental effects on cognitive bias in honey bees.

摘要

蜜蜂(西方蜜蜂)如果此前因模拟捕食者攻击的摇晃而受到惊扰,就容易对模糊刺激做出负面判断。这种认知偏差被认为反映了一种类似于人类的内在情绪状态,即当感觉不适时会做出更悲观的判断。为了通过实验测试认知偏差,让动物对两种不同刺激形成条件反应,其中一种刺激会受到惩罚,另一种则会得到奖励。随后呈现第三种模糊刺激,并测量受试对象的反应,看其表现得像是期望得到奖励还是惩罚。一般认为,负面经历会降低未来预期,使动物更加悲观。在此,我们测试了针对寄生螨瓦螨最常用的甲酸处理方式是否也会影响蜜蜂的未来预期。我们采用了一种嗅觉学习范式(即条件性喙伸展反应),使用两种气味剂以及这些气味剂的混合物作为模糊刺激。与摇晃蜜蜂不同,与未处理的蜜蜂相比,接触甲酸并未显著改变对模糊刺激的反应。总体证据表明,针对最有害的蜜蜂害虫之一的最常用处理方式对蜜蜂的认知偏差没有不利影响。

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