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Molecular basis of wing coloration in a Batesian mimic butterfly, Papilio polytes

机译:贝茨模仿蝴蝶凤蝶polytes 的翅膀着色的分子基础

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Batesian mimicry protects animals from predators through resemblance with distasteful models in shape, color pattern, or behavior. To elucidate the wing coloration mechanisms involved in the mimicry, we investigated chemical composition and gene expression of the pale yellow and red pigments of a swallowtail butterfly, Papilio polytes , whose females mimic the unpalatable butterfly Pachliopta aristolochiae . Using LC/MS, we showed that the pale yellow wing regions in non-mimetic females consist of kynurenine and N-β-alanyldopamine (NBAD). Moreover, qRT-PCR showed that kynurenine/NBAD biosynthetic genes were upregulated in these regions in non-mimetic females. However, these pigments were absent in mimetic females. RNA-sequencing showed that kynurenine/NBAD synthesis and Toll signaling genes were upregulated in the red spots specific to mimetic female wings. These results demonstrated that drastic changes in gene networks in the red and pale yellow regions can switch wing color patterns between non-mimetic and mimetic females of P. polytes .
机译:贝塞斯拟人模仿形状,颜色图案或行为的令人讨厌的模型,从而保护动物免受掠食者侵害。为了阐明拟态过程中涉及的机翼着色机制,我们研究了凤蝶蝶凤蝶的淡黄色和红色颜料的化学成分和基因表达,该蝶蝶的雌性模仿蝶形蝶凤蝶(Pachliopta aristolochiae)。使用LC / MS,我们显示了非拟态雌性的淡黄色侧翼区域由犬尿氨酸和N-β-丙氨酰多巴胺(NBAD)组成。此外,qRT-PCR显示,在非拟态女性的这些区域中,犬尿氨酸/ NBAD生物合成基因被上调。但是,模拟雌性中没有这些色素。 RNA测序表明,在模拟雌性机翼特有的红色斑点中,犬尿氨酸/ NBAD合成和Toll信号转导基因被上调。这些结果表明,红色和浅黄色区域中基因网络的急剧变化可以在非拟真和拟真拟南芥雌性之间切换翅膀的颜色模式。

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