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首页> 外文期刊>Behavioural processes >Learning in a sedentary insect predator: antlions (Neuroptera: Myrmeleontidae) anticipate a long wait.
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Learning in a sedentary insect predator: antlions (Neuroptera: Myrmeleontidae) anticipate a long wait.

机译:在久坐不动的昆虫捕食者中学习:蚂蚁(Neuroptera:Myrmeleoneidae)会等待很长时间。

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摘要

Pit-building antlions, the larvae of a winged adult insect, capture food by digging funnel-shaped pits in sand and then lying in wait, buried at the vertex, for prey to fall inside. The sedentary nature of this sit-and-wait predatory behaviour and, especially, antlions' innate ability to detect prey arrival, do not fit the typical profile of insects that possess learning capabilities. However, we show, for the first time, that learning can play an important role in this unique form of predation. In three separate experiments, individual antlions received, once per training day, either a vibrational cue presented immediately before the arrival of food or that same cue presented independently of food arrival. Signalling of food not only produced a learned anticipatory behavioural response (Experiment 1), but also conferred a fitness advantage: Associative learning enabled antlions to dig better pits (Experiments 2 and 3), extract food more efficiently (Experiments 2 and 3), and, in turn, moult sooner (Experiment 3) than antlions not receiving the associative learning treatment.
机译:坑坑洼洼的蚂蚁是有翅的成虫的幼虫,通过在沙子上挖出漏斗状的小坑,然后躺在地下等待,捕获猎物,从而捕获食物,从而捕获食物。这种静坐等待的掠食行为的久坐特性,尤其是蚂蚁的先天能力能够检测猎物的到来,不符合具有学习能力的昆虫的典型特征。但是,我们首次表明,学习可以在这种独特的掠夺形式中发挥重要作用。在三个单独的实验中,每个训练日一次给单个的蚂蚁带来一个振动提示,该提示是在食物到达之前立即显示的,或者相同的提示是与食物到达无关的。食物的信号传递不仅产生了学习到的预期行为反应(实验1),而且还赋予了健身优势:关联学习使蚂蚁能够更好地挖坑(实验2和3),更有效地提取食物(实验2和3),以及,反之,比没有接受相关学习治疗的鹿更早换羽(实验3)。

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