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New fossil insect order Permopsocida elucidates major radiation and evolution of suction feeding in hemimetabolous insects (Hexapoda: Acercaria)

机译:新的化石昆虫纲Permopsocida阐明了半代谢昆虫的主要辐射和吸食的演变(六足动物:尾cer)

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摘要

With nearly 100,000 species, the Acercaria (lice, plant lices, thrips, bugs) including number of economically important species is one of the most successful insect lineages. However, its phylogeny and evolution of mouthparts among other issues remain debatable. Here new methods of preparation permitted the comprehensive anatomical description of insect inclusions from mid-Cretaceous Burmese amber in astonishing detail. These “missing links” fossils, attributed to a new order Permopsocida, provide crucial evidence for reconstructing the phylogenetic relationships in the Acercaria, supporting its monophyly, and questioning the position of Psocodea as sister group of holometabolans in the most recent phylogenomic study. Permopsocida resolves as sister group of Thripida + Hemiptera and represents an evolutionary link documenting the transition from chewing to piercing mouthparts in relation to suction feeding. Identification of gut contents as angiosperm pollen documents an ecological role of Permopsocida as early pollen feeders with relatively unspecialized mouthparts. This group existed for 185 million years, but has never been diverse and was superseded by new pollenivorous pollinators during the Cretaceous co-evolution of insects and flowers. The key innovation of suction feeding with piercing mouthparts is identified as main event that triggered the huge post-Carboniferous radiation of hemipterans, and facilitated the spreading of pathogenic vectors.
机译:拥有近100,000种物种的Acercaria(虱子,植物虱子,蓟马,虫子)包括一些具有经济重要性的物种,是最成功的昆虫谱系之一。然而,它的系统发育和口器的演变等问题仍然值得商bat。在这里,新的制备方法允许对来自白垩纪中期缅甸琥珀的昆虫包裹体进行详尽的解剖学描述。这些“缺失的联系”化石归因于新的Permopsocida,为重建针cer的系统发育关系,支持其单生提供了重要证据,并质疑Psocodea作为全脂代谢的姊妹群在最新的系统生物学研究中的地位。 Permopsocida解析为Thripida + Hemiptera的姊妹组,代表了一种进化联系,记录了与吸食有关的从咀嚼到刺穿的口器的过渡。将肠道内容物鉴定为被子植物花粉证明了Permopsocida作为具有相对非专业口器的早期花粉饲养者的生态作用。该组存在1.85亿年,但从未发生过变化,在白垩纪昆虫和花朵的共同进化过程中被新的花粉传粉媒介所取代。带有刺入式口器的吸食的关键创新被确定为主要事件,引发了半足类的后石炭纪巨大放射,并促进了病原体的传播。

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