How deep is the conflict between molecular and fossil evidence on the age of angiosperms?

New Phytol

School of Geography, Earth and Environmental Sciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

Published: July 2019

AI Article Synopsis

  • The origin timing of angiosperms is debated, with molecular analyses suggesting pre-Cretaceous origins that clash with fossil records indicating a Cretaceous emergence.
  • Fossil pollen data shows that angiosperms appeared in Northern Gondwana during the Valanginian, later spreading and evolving in a way consistent with other plant evolution findings.
  • The study highlights that past interpretations of pre-Cretaceous angiosperms may actually represent different plant types, and advocates for integrating fossil and molecular data to better understand angiosperm evolution.

Article Abstract

The timing of the origin of angiosperms is a hotly debated topic in plant evolution. Molecular dating analyses that consistently retrieve pre-Cretaceous ages for crown-group angiosperms have eroded confidence in the fossil record, which indicates a radiation and possibly also origin in the Early Cretaceous. Here, we evaluate paleobotanical evidence on the age of the angiosperms, showing how fossils provide crucial data for clarifying the situation. Pollen floras document a Northern Gondwanan appearance of monosulcate angiosperms in the Valanginian and subsequent poleward spread of monosulcates and tricolpate eudicots, accelerating in the Albian. The sequence of pollen types agrees with molecular phylogenetic inferences on the course of pollen evolution, but it conflicts strongly with Triassic and early Jurassic molecular ages, and the discrepancy is difficult to explain by geographic or taphonomic biases. Critical scrutiny shows that supposed pre-Cretaceous angiosperms either represent other plant groups or lack features that might confidently assign them to the angiosperms. However, the record may allow the Late Jurassic existence of ecologically restricted angiosperms, like those seen in the basal ANITA grade. Finally, we examine recently recognized biases in molecular dating and argue that a thoughtful integration of fossil and molecular evidence could help resolve these conflicts.

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Source
http://dx.doi.org/10.1111/nph.15708DOI Listing

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