Publication | Open Access
A genomic timescale for placental mammal evolution
141
Citations
133
References
2023
Year
Comparative GenomicsGeneticsAnimal GeneticsEmbryologyPhylogenetic AnalysisPhylogeneticsMolecular EcologyMammalogyPlacental RadiationPhylogeny ComparisonPlacental DevelopmentSpeciation EventsPhylogenomicsPlacental Mammal EvolutionPopulation GeneticsLiving Placental MammalsPlacental FunctionBiologyNatural SciencesEvolutionary BiologyPhylogenetic MethodMedicine
The precise pattern and timing of speciation events that gave rise to all living placental mammals remain controversial. We provide a comprehensive phylogenetic analysis of genetic variation across an alignment of 241 placental mammal genome assemblies, addressing prior concerns regarding limited genomic sampling across species. We compared neutral genome-wide phylogenomic signals using concatenation and coalescent-based approaches, interrogated phylogenetic variation across chromosomes, and analyzed extensive catalogs of structural variants. Interordinal relationships exhibit relatively low rates of phylogenomic conflict across diverse datasets and analytical methods. Conversely, X-chromosome versus autosome conflicts characterize multiple independent clades that radiated during the Cenozoic. Genomic time trees reveal an accumulation of cladogenic events before and immediately after the Cretaceous-Paleogene (K-Pg) boundary, implying important roles for Cretaceous continental vicariance and the K-Pg extinction in the placental radiation.
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