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首页> 外文期刊>Physiology & behavior >Mayflies are least attracted to vertical polarization: A polarotactic reaction helping to avoid unsuitable habitats
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Mayflies are least attracted to vertical polarization: A polarotactic reaction helping to avoid unsuitable habitats

机译:f虫最少被垂直极化吸引:极化反应有助于避免不合适的栖息地

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摘要

Like other aquatic insects, mayflies are positively polarotactic and locate water surfaces by means of the horizontal polarization of water-reflected light. However, may vertically polarized light also have implications for the swarming behaviour of mayflies? To answer this question, we studied in four field experiments the behavioural responses of Ephoron virgo and Caenis robusta mayflies to lamps emitting horizontally and vertically polarized and unpolarized light. In both species, unpolarized light induces positive phototaxis, horizontally polarized light elicits positive photo- and polarotaxis, horizontally polarized light is much more attractive than unpolarized light, and vertically polarized light is the least attractive if the stimulus intensities and spectra are the same. Vertically polarized light was the most attractive for C. robusta if its intensity was about two and five times higher than that of the unpolarized and horizontally polarized stimuli, respectively. We suggest that the mayfly behaviour observed in our experiments may facilitate the stability of swarming above water surfaces. Beside the open water surface reflecting horizontally polarized light, the shadow and mirror image of riparian vegetation at the edge of the water surface reflect weakly and non-horizontally (mainly vertically) polarized light. Due to their positive polarotaxis, flying mayflies remain continuously above the water surface, because they keep away from the unpolarized or non-horizontally polarizing edge regions (water surface and coast line) of water bodies. We also discuss how our findings can explain the regulation of mayfly colonization. (C) 2016 Elsevier Inc. All rights reserved.
机译:像其他水生昆虫一样,may具有正极性,并通过水反射光的水平偏振来定位水面。但是,垂直偏振光是否也会对may的成群行为产生影响?为了回答这个问题,我们在四个野外实验中研究了Ephoron处女座和Caenis Robusta可能对发出水平和垂直偏振和非偏振光的灯的行为响应。在这两种物种中,非偏振光会引起正的趋光性,水平偏振的光会引起正的趋光性和偏光性,水平偏振的光比未偏振的光更具吸引力,而垂直偏振光在刺激强度和光谱相同的情况下吸引力最小。如果垂直偏振光的强度分别比未偏振和水平偏振刺激的强度分别高约两倍和五倍,则垂直偏振光对罗氏梭菌最有吸引力。我们建议,在我们的实验中观察到的fly蝇行为可能有助于在水面上方群聚的稳定性。在开放水表面反射水平偏振光的同时,在水表面边缘的河岸植被的阴影和镜像会反射弱且非水平(主要是垂直)的偏振光。由于它们的正极轴性,飞行中的飞蝇会一直保持在水面之上,因为它们远离水体的非极化或非水平极化的边缘区域(水面和海岸线)。我们还将讨论我们的发现如何解释can蝇定居的规律。 (C)2016 Elsevier Inc.保留所有权利。

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