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Antennal scales improve signal detection efficiency in moths

机译:触角秤可提高飞蛾的信号检测效率

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摘要

The elaborate bipectinate antennae of male moths are thought to increase their sensitivity to female sex pheromones, and so should be favoured by selection. Yet simple filamentous antennae are the most common structure among moths. The stereotypic arrangements of scales on the surface of antennae may resolve this paradox. We use computational fluid dynamics techniques to model how scales on the filamentous antennae of moths affect the passage of different particles in the airflow across the flagellum in both small and large moths. We found that the scales provide an effective solution to improve the efficacy of filamentous antennae, by increasing the concentration of nanoparticles, which resemble pheromones, around the antennae. The smaller moths have a greater increase in antennal efficiency than larger moths. The scales also divert microparticles, which resemble dust, away from the antennal surface, thereby reducing contamination. The positive correlations between antennal scale angles and sensilla number across Heliozelidae moths are consistent with the predictions of our model.
机译:雄性飞蛾精心制作的双链状触角被认为增加了它们对雌性性信息素的敏感性,因此应优先选择。然而,简单的丝状触角是蛾类中最常见的结构。触角表面上的鳞片刻板印象可以解决这一矛盾。我们使用计算流体动力学技术来模拟飞蛾丝状触角上的鳞片如何影响不同大小的飞蛾穿过鞭毛的气流中不同颗粒的通过。我们发现,鳞片通过增加触角周围类似于费洛蒙的纳米颗粒的浓度,提供了一种改善丝状触角功效的有效解决方案。与较大的飞蛾相比,较小的飞蛾在触角效率上的提高更大。鳞片还将类似灰尘的微粒从触角表面转移开,从而减少了污染。鳞翅目蛾的触角尺度角和感官数之间的正相关与我们模型的预测一致。

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