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Octopamine modulates honey bee dance behavior

机译:章鱼胺调节蜜蜂的舞蹈行为

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Honey bees communicate the location and desirability of valuable forage sites to their nestmates through an elaborate, symbolic "dance language." The dance language is a uniquely complex communication system in invertebrates, and the neural mechanisms that generate dances are largely unknown. Here we show that treatments with controlled doses of the biogenic amine neuromodulator octopamine selectively increased the reporting of resource value in dances by forager bees. Oral and topical octopamine treatments modulated aspects of dances related to resource profitability in a dose-dependent manner. Dances for pollen and sucrose responded similarly to octopamine treatment, and these effects were eliminated by treatment with the octopamine antagonist mianserin. We propose that octopamine modulates the representation of floral rewards in dances by changing the processing of reward in the honey bee brain. Octopamine is known to modulate appetitive behavior in a range of solitary insects; the role of octopamine in dance provides an example of how neural substrates can be adapted for new behavioral innovations in the process of social evolution.
机译:蜜蜂通过精心制作的象征性“舞蹈语言”将有价值的饲草场所的位置和适宜性传达给其巢友。舞蹈语言是无脊椎动物中独特而复杂的通信系统,而产生舞蹈的神经机制在很大程度上是未知的。在这里,我们表明,控制剂量的生物胺神经调节剂章鱼胺的治疗选择性地提高了觅食蜂在舞蹈中资源价值的报道。口服和局部用章鱼胺治疗以剂量依赖的方式调节与资源获利有关的舞蹈方面。花粉和蔗糖的舞蹈与章鱼胺治疗的反应相似,而通过章鱼胺拮抗剂米安色林的治疗消除了这些影响。我们建议章鱼胺通过改变蜜蜂大脑中奖励的处理来调节舞蹈中花卉奖励的表示。已知章鱼胺能调节一系列单生昆虫的食欲。章鱼胺在舞蹈中的作用提供了一个示例,说明了如何在神经进化过程中使神经基质适应社会发展过程中的新行为创新。

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