What it is
The authors analysed chromosome-level, long-read genome assemblies from 103 bat species, including 42 new assemblies, covering all 21 bat families, and combined them with a morphological dataset of 699 characters for 65 species that includes 44 pre-Quaternary fossils. The genomes yield a new phylogeny that places Myzopodidae as the earliest branch within Vespertilionoidea and identifies Emballonuroidea and Vespertilionoidea as sister groups, and chromosomal ancestral-state reconstructions support 26 ancestral bat chromosomes. Dating and biogeographic analyses indicate that bats, and with them powered flight, most likely originated in Europe in the late Palaeocene.
Why it matters
Bats are extraordinary among mammals, having uniquely evolved powered flight and laryngeal echolocation, yet their evolutionary history had remained unresolved, with long-standing controversies. The genome analysis explains why previous phylogenetic studies were misled, and adding fossils refutes African and North American origins for the group and, through the placement of the fossil Vielasia in the oldest 'Eochiroptera' clade, indicates that laryngeal echolocation predates the diversification of living bats.
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Filed underBat Biology and Ecology Studies, Evolution and Paleontology Studies, Genomics and Phylogenetic Studies