Interaction of visual and olfactory cues in the aggregation behaviour of the haematophagous bug Triatoma infestans.

C E Reisenman, A N Lorenzo Figueiras, M Giurfa, C R Lazzari
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引用次数: 45

Abstract

We analysed how the assembling behaviour of Triatoma infestans is modulated by the convergence of chemical cues released by their faeces and the spectral quality of the light associated with refuges. Second-instar larvae were confronted with refuges associated with a visual stimulus (either blue, green or red lights having the same intensity, or darkness) and a chemical cue (presence or absence of faeces). In this context, faeces constitute a major attractant for bugs. In the absence of faeces, bugs always assembled in dark places. Green light was always rejected despite the presence of faeces, i.e. the assembling behaviour was controlled by a photonegative reaction to this light. In the presence of red light, orientation towards the chemical cue dominated over the bugs' photonegative reaction to this light. Such a light was avoided in the absence of faeces but not in their presence. Also, negative phototaxis to blue light could be counteracted by the presence of the chemical cue. Thus, a concrete interaction between visual and olfactory cues occurred in these experiments: the bugs' response changed depending on the specific combination of spectral light and faeces. Finally, bugs responded differentially to blue, red and green lights of the same intensity. They assembled preferentially on red, followed by blue and then by green. Thus, discrimination between lights of different spectral quality is possible, probably through an achromatic mechanism.

在噬血虫的聚集行为中视觉和嗅觉线索的相互作用。
我们分析了感染三角瘤菌的聚集行为是如何被它们粪便释放的化学信号的聚合和与避难所相关的光的光谱质量所调节的。二龄幼虫面对与视觉刺激(相同强度的蓝色、绿色或红色灯光或黑暗)和化学暗示(存在或不存在粪便)相关的避难所。在这种情况下,粪便构成了虫子的主要引诱剂。在没有粪便的情况下,虫子总是聚集在黑暗的地方。尽管存在粪便,绿光总是被拒绝,也就是说,组装行为是由对这种光的光负反应控制的。在红光的存在下,朝向化学线索的方向主导了昆虫对这种光的负性反应。在没有粪便的情况下要避免这种光线,但在粪便存在的情况下却不会。此外,对蓝光的负趋光性可以被化学线索的存在所抵消。因此,在这些实验中,视觉和嗅觉线索之间发生了具体的相互作用:昆虫的反应取决于光谱光和粪便的特定组合。最后,虫子对相同强度的蓝色、红色和绿色光的反应是不同的。它们首先聚集在红色上,然后是蓝色,最后是绿色。因此,区分不同光谱质量的光是可能的,可能是通过消色差机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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