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Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera

机译:Sawfly Genomes揭示了培养了寄生蛋白和Eusocial Hymenoptera的Mega辐射的进化收购

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摘要

The tremendous diversity of Hymenoptera is commonly attributed to the evolution of parasitoidism in the last common ancestor of parasitoid sawflies (Orussidae) and wasp-waisted Hymenoptera (Apocrita). However, Apocrita and Orussidae differ dramatically in their species richness, indicating that the diversification of Apocrita was promoted by additional traits. These traits have remained elusive due to a paucity of sawfly genome sequences, in particular those of parasitoid sawflies. Here, we present comparative analyses of draft genomes of the primarily phytophagous sawfly Athalia rosae and the parasitoid sawfly Orussus abietinus. Our analyses revealed that the ancestral hymenopteran genome exhibited traits that were previously considered unique to eusocial Apocrita (e.g., low transposable element content and activity) and a wider gene repertoire than previously thought (e.g., genes for CO2 detection). Moreover, we discovered that Apocrita evolved a significantly larger array of odorant receptors than sawflies, which could be relevant to the remarkable diversification of Apocrita by enabling efficient detection and reliable identification of hosts.
机译:膜翅目昆虫的巨大多样性通常归因于parasitoidism的演变寄生叶蜂(Orussidae)和细腰蜂(细腰亚)的最后的共同祖先。然而,细腰亚和Orussidae在其物种丰富度显着不同,这表明细腰亚的多样化是由附加的特性提升。这些性状也由于叶蜂基因组序列的缺乏仍然难以捉摸,特别是那些寄生叶蜂的。在这里,我们目前的主要植食性蜂蜂[Athalia rosae和寄生蜂Orussus abietinus的基因组草案的比较分析。我们的分析显示,该祖膜翅目昆虫基因组表现出以前被视为唯一的完全社会性细腰亚(例如,低转座元件含量和活性)和比以前认为的更广泛的基因库(例如,基因CO2检测)的性状。此外,我们发现,演进细腰气味受体比锯蝇,这可能是相关的细腰的显着多样化通过使有效地检测和主机的可靠识别的显著更大的阵列。

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