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首页> 外文期刊>Journal of Insect Behavior >Ambient Illumination Influence on Photuris Firefly Larval Surface Movements is not Mediated by the Stemmata
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Ambient Illumination Influence on Photuris Firefly Larval Surface Movements is not Mediated by the Stemmata

机译:对Photureis萤火虫幼虫表面运动的环境照明影响不是由STEMMATA介导的

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Movements of fireflies visible on the surface of soil were measured under controlled laboratory conditions consisting of high and low ambient illumination. High illumination approximating the intensity of light prior to sunset constituted our light condition. Low illumination was consistent with ambient light levels after civil sunset, which we referred to as our dark condition. Surface movements were significantly more frequent during dark conditions compared to light conditions. Stemmata are the larval form of the insect eye and were the only identified visual organs present in Photuris larvae. We investigated whether stemmata provided larvae with the sensory information facilitating the light dependency of surface movements. We disrupted transmission of visual information from the larval eyes to the brain by severing the optic nerves. The amount of surface movement was compared between larvae with intact and severed optic nerves, under light and dark conditions. Light dependency of surface movements was preserved in larvae with cut optic nerves. The presence of the light dependency after cutting the optic nerves indicated that an alternative, extrastemmatal sensory pathway must be providing light intensity information to the animal. Light dependency was abolished upon removal of the head. Thus, these results suggested that the extraocular system providing light intensity information for regulating the frequency of surface movement was located in the head. The precise location of the suggested extraocular receptor and the nature of the associated sensory system remains unknown.
机译:在土壤表面上可见的萤火虫的运动在由高低环境照明组成的受控实验室条件下测量。高照明近似于日落前的光强度构成了我们的光线条件。在民事日落之后,低照明与环境光线水平一致,我们称之为我们的黑暗状况。与光条件相比,在暗条件下,表面运动明显更频繁。 STEMMATA是昆虫眼的幼虫形式,是Photuris幼虫中唯一鉴定的视觉器官。我们研究了STEMMATA是否提供了幼虫,其感官信息促进了表面运动的光依赖性。通过切断视神经,我们扰乱了从幼虫的视觉信息传播到大脑。在幼虫与光学神经中,在光和暗条件下比较表面运动量。表面运动的光依赖性在幼虫中保存了抗视神经。切割光学神经后的光依赖性表明替代方案的替代疗法感觉途径必须向动物提供光强度信息。在移除头部后消除了光依赖性。因此,这些结果表明,用于调节表面移动频率的光强度信息的外盖系统位于头部。所提出的外床受体的精确位置和相关感觉系统的性质仍然未知。

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