4.8 Article

A global phylogeny of turtles reveals a burst of climate-associated diversification on continental margins

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NATL ACAD SCIENCES
DOI: 10.1073/pnas.2012215118

关键词

turtle tree of life; divergence time estimation; GeoSSE; HiSSE; global climate change

资金

  1. US NSF [DEB 0817042, DEB 1239961]

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Living turtles exhibit extremely low species diversity despite their long evolutionary history, with climate and biogeography playing important roles in shaping their diversity. A study analyzing a large molecular dataset of turtles found that a threefold increase in diversification was associated with the emergence of new continental margins during the Eocene-Oligocene transition, driven by global cooling and drying. This shift in environmental conditions led to both regional extinctions and a burst of speciation in newly exposed habitats.
Living turtles are characterized by extraordinarily low species diversity given their age. The clade's extensive fossil record indicates that climate and biogeography may have played important roles in determining their diversity. We investigated this hypothesis by collecting a molecular dataset for 591 individual turtles that, together, represent 80% of all turtle species, including representatives of all families and 98% of genera, and used it to jointly estimate phylogeny and divergence times. We found that the turtle tree is characterized by relatively constant diversification (speciation minus extinction) punctuated by a single threefold increase. We also found that this shift is temporally and geographically associated with newly emerged continental margins that appeared during the Eocene-Oligocene transition about 30 million years before present. In apparent contrast, the fossil record from this time period contains evidence for a major, but regional, extinction event. These seemingly discordant findings appear to be driven by a common global process: global cooling and drying at the time of the Eocene-Oligocene transition. This climatic shift led to aridification that drove extinctions in important fossil-bearing areas, while simultaneously exposing new continental margin habitat that subsequently allowed for a burst of speciation associated with these newly exploitable ecological opportunities.

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