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Algal plankton turn to hunting to survive and recover from end-Cretaceous impact darkness
Gibbs, S.J.; Bown, P.R.; Ward, B.A.; Alvarez, S.A.; Kim, H.; Archontikis, O.A.; Sauterey, B.; Poulton, A.J.; Wilson, J.; Ridgwell, A. (2020). Algal plankton turn to hunting to survive and recover from end-Cretaceous impact darkness. Science Advances 6(44): eabc9123. https://dx.doi.org/10.1126/sciadv.abc9123
In: Science Advances. AAAS: New York. ISSN 2375-2548; e-ISSN 2375-2548, more
Peer reviewed article  

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Authors  Top 
  • Gibbs, S.J.
  • Bown, P.R.
  • Ward, B.A.
  • Alvarez, S.A.
  • Kim, H.
  • Archontikis, O.A.
  • Sauterey, B.
  • Poulton, A.J.
  • Wilson, J.
  • Ridgwell, A.

Abstract
    The end-Cretaceous bolide impact triggered the devastation of marine ecosystems. However, the specific kill mechanism(s) are still debated, and how primary production subsequently recovered remains elusive. We used marine plankton microfossils and eco-evolutionary modeling to determine strategies for survival and recovery, finding that widespread phagotrophy (prey ingestion) was fundamental to plankton surviving the impact and also for the subsequent reestablishment of primary production. Ecological selectivity points to extreme post-impact light inhibition as the principal kill mechanism, with the marine food chain temporarily reset to a bacteria-dominated state. Subsequently, in a sunlit ocean inhabited by only rare survivor grazers but abundant small prey, it was mixotrophic nutrition (autotrophy and heterotrophy) and increasing cell sizes that enabled the eventual reestablishment of marine food webs some 2 million years later.

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