Abstract
Earth was impacted by global glaciations during the Cryogenian (720 to 635 million years ago; Ma), events invoked to explain both the origins of multicellularity in Archaeplastida and radiation of the first land plants. However, the temporal relationship between these environmental and biological events is poorly established, due to a paucity of molecular and fossil data, precluding resolution of the phylogeny and timescale of archaeplastid evolution. We infer a time-calibrated phylogeny of early archaeplastid evolution based on a revised molecular dataset and reappraisal of the fossil record. Phylogenetic topology testing resolves deep archaeplastid relationships, identifying two clades of Viridiplantae and placing Bryopsidales as sister to the Chlorophyceae. Our molecular clock analysis infers an origin of Archaeplastida in the late-Paleoproterozoic to early-Mesoproterozoic (1712 to 1387 Ma). Ancestral state reconstruction of cytomorphological traits on this time-calibrated tree reveals many of the independent origins of multicellularity span the Cryogenian, consistent with the Cryogenian multicellularity hypothesis. Multicellular rhodophytes emerged 902 to 655 Ma while crown-Anydrophyta (Zygnematophyceae and Embryophyta) originated 796 to 671 Ma, broadly compatible with the Cryogenian plant terrestrialization hypothesis. Our analyses resolve the timetree of Archaeplastida with age estimates for ancestral multicellular archaeplastids coinciding with the Cryogenian, compatible with hypotheses that propose a role of Snowball Earth in plant evolution.
| Original language | English |
|---|---|
| Article number | evae026 |
| Journal | Genome biology and evolution |
| Volume | 16 |
| Issue number | 2 |
| Early online date | 9 Feb 2024 |
| DOIs | |
| Publication status | Published - 9 Feb 2024 |
Data Availability Statement
All data are available in the main text, the Supplementary materials or available on Figshare: https://figshare.com/s/460c2a4704493e5bb3b9.Funding
We wish to acknowledge funding from the Leverhulme Trust (RPG-2020-199 “iDAPT” project to C.W., P.D., and T.W.; RF-2022-167 to P.D.); the Natural Environment Research Council (NE/P013678/1 to P.D.; part of the Biosphere Evolution, Transitions and Resilience (BETR) programme cofunded by the Natural Science Foundation of China (NSFC); the John Templeton Foundation (62220 to P.D. and T.W.; the opinions expressed here do not necessarily reflect the views of the John Templeton Foundation); the Gordon and Betty Moore Foundation (GBMF9741 to P.D. and T.W.) and the Royal Society for a University Research Fellowship to T.W. (URF\R\201024).
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