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Genomic adaptations to aquatic and aerial life in mayflies and the origin of insect wings

机译:在Maylies和昆虫翅膀的起源中的基因组适应水生和空中生命

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The evolution of winged insects revolutionized terrestrial ecosystems and led to the largest animal radiation on Earth. However, we still have an incomplete picture of the genomic changes that underlay this diversification. Mayflies, as one of the sister groups of all other winged insects, are key to understanding this radiation. Here, we describe the genome of the mayfly Cloeon dipterum and its gene expression throughout its aquatic and aerial life cycle and specific organs. We discover an expansion of odorant-binding-protein genes, some expressed specifically in breathing gills of aquatic nymphs, suggesting a novel sensory role for this organ. In contrast, flying adults use an enlarged opsin set in a sexually dimorphic manner, with some expressed only in males. Finally, we identify a set of wing-associated genes deeply conserved in the pterygote insects and find transcriptomic similarities between gills and wings, suggesting a common genetic program. Globally, this comprehensive genomic and transcriptomic study uncovers the genetic basis of key evolutionary adaptations in mayflies and winged insects.
机译:翅膀昆虫的演变彻底改变了陆地生态系统,导致了地球上最大的动物辐射。但是,我们仍然存在未完成这种多样化的基因组变化的图片。 Mayflies是所有其他翅膀昆虫的姐妹群体之一,是理解这种辐射的关键。在这里,我们描述了Mayfly Cloeon Diputerum的基因组及其在其水生生命周期和特定器官的过程中的基因表达。我们发现了气味结合蛋白基因的扩张,一些特异性表达了呼吸水生若虫的鳃,表明该器官的新感官作用。相比之下,飞行成人使用性别二态的方式使用扩大的Opsin,其中一些只表达了男性。最后,我们鉴定了一组深度保守在翼型昆虫中的翼相关基因,并在鳃和翅膀之间找到转录组的相似性,表明常见的遗传计划。在全球范围内,这种综合基因组和转录组研究揭示了Maylies和Weeded昆虫的关键进化适应的遗传基础。

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