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Colour polymorphic lures exploit innate preferences for spectral versus luminance cues in dipteran prey

机译:彩色多态诱饵利用自然偏好来识别北角猎物中的光谱和亮度线索

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摘要

BackgroundTheory predicts that colour polymorphism may be favored by variation in the visual context under which signals are perceived. The context encompasses all environmental determinants of light availability and propagation, but also the dynamics of perception in receivers. Color vision involves the neural separation of information into spectral versus luminance channels, which often differentially guide specific tasks. Here we explicitly tested whether this discrete perceptual basis contributes to the maintenance of polymorphism in a prey-luring system. The orb-weaving spider Gasteracantha fornicata is known to attract a broad community of primarily dipteran prey due to their conspicuous banded dorsal signal. They occur in two morphs (“white” and “yellow”) which should, respectively, generate greater luminance and color contrast in the dipteran eye. Given that arthropods often rely upon luminance-versus-spectral cues for relatively small-versus-large stimulus detection, we predicted a switch in relative attractiveness among morphs according to apparent spider size.
机译:BackgroundTheory预测,在感知信号的视觉环境中,颜色多态性可能会受到青睐。上下文包括光可用性和传播的所有环境决定因素,还包括接收器中感知的动态。彩色视觉涉及将信息从神经上分离成光谱和亮度通道,这通常以差异方式指导特定任务。在这里,我们明确测试了这种离散的感知基础是否有助于维持捕食系统中的多态性。众所周知,织球蜘蛛Gasteracantha fornicata会吸引大量的主要由二足动物组成的猎物,因为它们的背带明显带状。它们以两种变形(“白色”和“黄色”)出现,应该分别在双足动物的眼睛中产生更大的亮度和颜色对比度。鉴于节肢动物通常依赖于亮度与光谱的线索来进行相对较小与较大的刺激检测,我们根据表观蜘蛛的大小预测了形态之间的相对吸引力会发生变化。

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