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Cenozoic planktonic marine diatom diversity and correlation to climate change

February 20, 2014

Marine planktonic diatoms export carbon to the deep ocean, playing a key role in the global carbon cycle. Although commonly thought to have diversified over the Cenozoic as global oceans cooled, only two conflicting quantitative reconstructions exist, both from the Neptune deep-sea microfossil occurrences database. Total diversity shows Cenozoic increase but is sample size biased; conventional subsampling shows little net change. We calculate diversity from a separately compiled new diatom species range catalog, and recalculate Neptune subsampled-in-bin diversity using new methods to correct for increasing Cenozoic geographic endemism and decreasing Cenozoic evenness. We find coherent, substantial Cenozoic diversification in both datasets. Many living cold water species, including species important for export productivity, originate only in the latest Miocene or younger. We make a first quantitative comparison of diatom diversity to the global Cenozoic benthic ∂18O (climate) and carbon cycle records (∂13C, and 20-0 Ma pCO2). Warmer climates are strongly correlated with lower diatom diversity (raw: rho = .92, p.9, detrended r>.6, all p

Publication Year 2014
Title Cenozoic planktonic marine diatom diversity and correlation to climate change
DOI 10.1371/journal.pone.0084857
Authors David Lazarus, John Barron, Johan Renaudie, Patrick Diver, Andreas Turke
Publication Type Article
Publication Subtype Journal Article
Series Title PLoS ONE
Index ID 70094482
Record Source USGS Publications Warehouse
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