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Genetic switch in UV response of mimicry-related pale-yellow colors in Batesian mimic butterfly, Papilio polytes

机译:Bateian Mimic Butterfly中的紫外线浅黄色颜色紫外线反应遗传开关

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In a Batesian mimic butterfly Papilio polytes , mimetic females resemble an unpalatable model, Pachliopta aristolochiae , but exhibit a different color pattern from nonmimetic females and males. In particular, the pale-yellow region on hind wings, which correspondingly sends important putative signals for mimicry and mate preference, is different in shape and chemical features between nonmimetic and mimetic morphs. Recently, we found that mimetic-type doublesex [ dsx (H) ] causes mimetic traits; however, the control of dimorphic pale-yellow colors remains unclear. Here, we revealed that dsx (H) switched the pale-yellow colors from UV-excited fluorescent type (nonmimetic) to UV-reflecting type (mimetic), by repressing the papiliochrome II synthesis genes and nanostructural changes in wing scales. Photoreceptor reactivities showed that some birds and butterflies could effectively recognize mimetic and nonmimetic pale-yellow colors, suggesting that a genetic switch in the UV response of pale-yellow colors may play essential roles in establishing the dimorphic female-limited Batesian mimicry.
机译:在Batesian模仿蝴蝶Papilio Polytes中,模拟女性类似于不可批准的模型,但展示了来自非染色女性和男性的不同颜色模式。特别地,在后翼上的浅黄色区域,相应地向模拟和配合偏好发送重要推定信号,在非染色和模拟变形的形状和化学特征中是不同的。最近,我们发现模拟型DoubleSex [DSX(H)]导致模拟性状;然而,对二维浅黄色的控制仍不清楚。在这里,我们揭示了DSX(H)通过压制椒苷II合成基因和机翼鳞片的纳米结构变化将来自紫外线激发荧光型(非摩擦型)的浅黄色切换到紫外线反射型(模拟物)。感染器反弹表明,一些鸟类和蝴蝶可以有效地识别模拟和非染色的浅黄色,表明浅黄色的紫外线响应中的遗传开关可能在建立二维阴性的贝茨模拟方面起着基本作用。

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