首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >apterous A specifies dorsal wing patterns and sexual traits in butterflies
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apterous A specifies dorsal wing patterns and sexual traits in butterflies

机译:适当的A指明了蝴蝶的背翅模式和性特征

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摘要

Butterflies have evolved different colour patterns on their dorsal and ventral wing surfaces to serve different signalling functions, yet the developmental mechanisms controlling surface-specific patterning are still unknown. Here, we mutate both copies of the transcription factor apterous in Bicyclus anynana butterflies using CRISPR/Cas9 and show that apterous A, expressed dorsally, functions both as a repressor and modifier of ventral wing colour patterns, as well as a promoter of dorsal sexual ornaments in males. We propose that the surface-specific diversification of wing patterns in butterflies proceeded via the co-option of apterous A or its downstream effectors into various gene regulatory networks involved in the differentiation of discrete wing traits. Further, interactions between apterous and sex-specific factors such as doublesex may have contributed to the origin of sexually dimorphic surface-specific patterns. Finally, we discuss the evolution of eyespot number diversity in the family Nymphalidae within the context of developmental constraints due to apterous regulation.
机译:蝴蝶在其背侧和腹侧的翅膀表面上已演变出不同的颜色模式,以发挥不同的信号传递功能,但控制表面特定模式的发育机制仍然未知。在这里,我们使用CRISPR / Cas9突变了Bicyclus anynana蝴蝶的两个转录因子的无性系副本,并显示了在背侧表达的无性系A既充当了腹侧翼颜色模式的阻遏物和修饰剂,又是背侧性装饰物的启动子在男性中。我们建议,通过选择适当的A或其下游效应子进入涉及离散翼特征分化的各种基因调控网络,来对蝴蝶的翼型进行表面特异性的多样化。此外,诸如双性恋之类的适性和性别特异性因素之间的相互作用可能促成性双态表面特异性模式的起源。最后,我们讨论了由于不适当的调节而在发育限制的背景下,家蝇科中眼点数量多样性的演变。

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