An integrative phylogenomic approach illuminates the evolutionary history of Old World tree frogs (Anura: Rhacophoridae)
[Display omitted] •High-throughput sequencing was applied to Rhacophoridae for the first time.•The uniquely robust time-calibrated phylogeny for Rhacophoridae is obtained.•A more detailed spatiotemporal process of Rhacophoridae is provided.•All transitions of reproductive modes evolved in an ordered...
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Veröffentlicht in: | Molecular phylogenetics and evolution 2020-04, Vol.145, p.106724-106724, Article 106724 |
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Sprache: | eng |
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•High-throughput sequencing was applied to Rhacophoridae for the first time.•The uniquely robust time-calibrated phylogeny for Rhacophoridae is obtained.•A more detailed spatiotemporal process of Rhacophoridae is provided.•All transitions of reproductive modes evolved in an ordered, gradual sequence.•The reproductive mode is linked to diversification rates for Rhacophoridae.
Rhacophoridae are one of the most speciose and ecologically diverse families of amphibians. Resolution of their evolutionary relationships is key to understanding the accumulation of biodiversity, yet previous hypotheses based on Sanger sequencing exhibit much discordance amongst generic relationships. This conflict precludes the making of sound macroevolutionary conclusions. Herein, we conduct the first phylogenomic study using broad-scale sampling and sequences of 352 nuclear DNA loci obtained using anchored hybrid enrichment targeted sequencing. The robust time-calibrated phylogenetic hypothesis clarifies several long-disputed relationships and facilitates the testing of evolutionary hypotheses on spatiotemporal diversification and reproductive modes. The major extant lineages of Rhacophoridae appear to have radiated in mainland Asia, and the spatiotemporal process corresponds with several common accumulations of biodiversity in Asia. Analyses do not detect any case of “Out of Himalaya” in Rhacophoridae. All transitions of reproductive modes appear to have evolved in an ordered, gradual sequence associated with gaining independence of standing water for larval development. The different reproductive modes are phylogenetically conserved and the completion of their transitions appear to have occurred over a period of ~30 Ma, which does not fit a pattern of a rapid burst of diversification. Innovations in reproductive modes associate statistically with the uneven distribution of species-richness between clades, where higher diversification is linked to increased terrestrial modes of reproduction. These results strengthen the hypothesis that breeding innovations drive diversification by providing new opportunities for ecological release and dispersion. |
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ISSN: | 1055-7903 1095-9513 |
DOI: | 10.1016/j.ympev.2019.106724 |