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Notch and Delta Control the Switch and Formation of Camouflage Patterns in Caterpillars

机译:凹口和三角洲控制开关和形成毛毛虫的迷彩图案

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摘要

In most Papilio species, a younger larva mimics bird droppings but changes its pattern to match host plant colors in its final instar. This change is determined by juvenile hormone (JH) during the JH-sensitive period (JHSP) early in the fourth instar. Recently, we found that homeobox genes control the pre-pattern formation specifically during JHSP, but the molecular mechanisms underlying final patterning and pigmentation at molt are unknown. By knockdown of Delta and Notch in Papilio xuthus larvae, we here showed that these genes define the edge and pigmentation area in final patterns, during and even after JHSP, suggesting that they bridge the JHSP and molt. Knockdown of Delta in Papilio machaon led to similar phenotypic changes, and knockdown of Notch caused pigmentation loss in twin spots of the silkworm Multilunar (L) mutant. Our findings suggest the importance of the Notch signaling pathway in caterpillars' adaptive evolution of color pattern formation.
机译:在大多数Papilio物种中,一个年轻的幼虫模仿鸟粪,但改变了它的模式,以使主植物颜色在最终的瞬间相匹配。这种变化由jh敏感时期(JHSP)在第四龄龄早日的少年激素(JH)确定。最近,我们发现Homeobox基因在JHSP期间专门控制预模式形成,但是最终图案化和摩尔特的色素沉着的分子机制是未知的。通过在Papilio Xuthus幼虫中的Delta和Notch的敲低,我们在此表明​​这些基因在最终模式,期间甚至JHSP期间甚至甚至均匀地限定了边缘和色素沉着区域,表明它们桥接JHSP和MOLT。 Papilio Machaon中的Delta敲低导致了类似的表型变化,并且Notch的敲低导致家蚕突变体的双斑的色素损失。我们的研究结果表明,凹口信号通路在彩色图案形成的卡特彼勒的自适应演化中的重要性。

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