bioRxiv · 10.1101/813386
The origin and diversification of pteropods predate past perturbations in the Earth’s carbon cycle
Abstract
Pteropods are a group of planktonic gastropods that are widely regarded as biological indicators for assessing the impacts of ocean acidification (OA). Their thin aragonitic shells are highly sensitive to acute changes in ocean chemistry. However, to gain insight into their potential to adapt to current climate change, we need to accurately reconstruct their evolutionary history and assess their responses to past changes in Earths carbon cycle. Here, we resolve the phylogeny and timing of pteropod evolution with a phylogenomic dataset incorporating 21 new species and new fossil evidence. In agreement with traditional taxonomy, we recovered the first molecular support for a division between sea butterflies (Thecosomata: mucus-web feeders) and sea angels (Gymnosomata: active predators). Molecular dating demonstrated that these two lineages diverged in the early Cretaceous, and that all main pteropod clades, including shelled, partially-shelled and unshelled groups, diverged in the mid to late Cretaceous. Hence, these clades originated prior to and subsequently survived major global change events, including the Paleocene Eocene Thermal Maximum (PETM), which is the closest analogue to modern-day ocean acidification and warming. Our findings indicate that aragonitic calcifiers have been resilient to extreme perturbations in the Earths carbon cycle over evolutionary timescales.
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Peijnenburg, K. T. C. A., Janssen, A. W., Wall-Palmer, D., Goetze, E., Maas, A., Todd, J. A., Marletaz, F.. 2019-10-21. The origin and diversification of pteropods predate past perturbations in the Earth’s carbon cycle. https://doi.org/10.1101/813386
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