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Large Scale Insect Phylogenomics Analyses reveal new insights into insect Evolution

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Mendeley Data2026-04-09 收录
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Understanding insect evolution requires resolving deep phylogenetic relationships and divergence times, yet conflicting hypotheses persist due to biological and methodological complexities. Here, we address this challenge by reconstructing a robust, time-calibrated phylogeny of Insecta using 481 single-copy orthologous genes from 794 high-quality genomes. Our analyses resolve most inter-ordinal relationships with high confidence and employ a multi-faceted approach to diagnose the nature of two contentious nodes. We show that the conflict surrounding the relationships among Paraneoptera is the result of a hard polytomy, consistent with an ancient radiation event where phylogenetic signal is genuinely absent. In contrast, the conflict at the base of Holometabola is characterized by a dominant signal competing with a significant secondary one, a pattern consistent with deep coalescence that allows for a statistically confident resolution. Our divergence time estimates place the origin of insects in the Early Ordovician (~469 Ma) and the evolution of flight in the Silurian, coinciding with the rise of terrestrial vascular plants. Ultimately, our study provides a comprehensive framework for the insect tree of life and demonstrates how moving beyond a single topological estimate to diagnose the distinct evolutionary processes underlying phylogenomic conflict can resolve key relationships and explain the sources of persistent incongruence.

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