College of Computer and Control Engineering, Nankai University, 38 Tongyan Road, Haihe Education Park, Jinnan District, Tianjin 300350, China.
Institute of Entomology, College of Life Sciences, Nankai University, 94 Weijin Road, Nankai District, Tianjin 300071, China.
Sci Rep. 2016 Dec 13;6:38939. doi: 10.1038/srep38939.
Insecta s. str. (=Ectognatha), comprise the largest and most diversified group of living organisms, accounting for roughly half of the biodiversity on Earth. Understanding insect relationships and the specific time intervals for their episodes of radiation and extinction are critical to any comprehensive perspective on evolutionary events. Although some deeper nodes have been resolved congruently, the complete evolution of insects has remained obscure due to the lack of direct fossil evidence. Besides, various evolutionary phases of insects and the corresponding driving forces of diversification remain to be recognized. In this study, a comprehensive sample of all insect orders was used to reconstruct their phylogenetic relationships and estimate deep divergences. The phylogenetic relationships of insect orders were congruently recovered by Bayesian inference and maximum likelihood analyses. A complete timescale of divergences based on an uncorrelated log-normal relaxed clock model was established among all lineages of winged insects. The inferred timescale for various nodes are congruent with major historical events including the increase of atmospheric oxygen in the Late Silurian and earliest Devonian, the radiation of vascular plants in the Devonian, and with the available fossil record of the stem groups to various insect lineages in the Devonian and Carboniferous.
节肢动物门(Insecta s. str.),包含了最大且最多样化的生物群体,占据了地球上大约一半的生物多样性。了解昆虫之间的关系以及它们辐射和灭绝的特定时间间隔,对于全面了解进化事件至关重要。尽管一些更深层次的节点已经得到了一致的解决,但由于缺乏直接的化石证据,昆虫的完整进化仍然不清晰。此外,昆虫的各种进化阶段和相应的多样化驱动力仍有待识别。在这项研究中,使用了所有昆虫目的综合样本来重建它们的系统发育关系并估计其深层分歧。通过贝叶斯推断和最大似然分析,昆虫目的系统发育关系得到了一致的恢复。基于无关联对数正态松弛时钟模型,建立了所有有翅昆虫谱系之间的完整分歧时间尺度。推断的各个节点的时间尺度与重大历史事件一致,包括晚志留世和早泥盆世大气中氧气的增加、泥盆纪维管植物的辐射,以及与各种昆虫谱系在泥盆纪和石炭纪的茎群的化石记录一致。