4.7 Article

Vertically migrating Isoxys and the early Cambrian biological pump

出版社

ROYAL SOC
DOI: 10.1098/rspb.2021.0464

关键词

biological pump; Cambrian; computational fluid dynamics; Isoxys; pelagic

资金

  1. Alexander Agassiz Postdoctoral Fellowship (Harvard University)
  2. Herchel Smith Postdoctoral Fellowship (University of Cambridge)
  3. Dame Kathleen Ollerenshaw Research Fellowship (University of Manchester)
  4. Museum Research Fellowship (Oxford University Museum of Natural History)

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The biological pump is crucial for transporting nutrients from surface-dwelling primary producers to deep-sea animal communities. The establishment of an efficient biological pump was likely a key factor enabling the diversification of animals over 500 million years ago during the Cambrian explosion. Vertical migration of animals is one of the main mechanisms through which the modern biological pump operates.
The biological pump is crucial for transporting nutrients fixed by surface-dwelling primary producers to demersal animal communities. Indeed, the establishment of an efficient biological pump was likely a key factor enabling the diversification of animals over 500 Myr ago during the Cambrian explosion. The modern biological pump operates through two main vectors: the passive sinking of aggregates of organic matter, and the active vertical migration of animals. The coevolution of eukaryotes and sinking aggregates is well understood for the Proterozoic and Cambrian; however, little attention has been paid to the establishment of the vertical migration of animals. Here we investigate the morphological variation and hydrodynamic performance of the Cambrian euarthropod Isoxys. We combine elliptical Fourier analysis of carapace shape with computational fluid dynamics simulations to demonstrate that Isoxys species likely occupied a variety of niches in Cambrian oceans, including vertical migrants, providing the first quantitative evidence that some Cambrian animals were adapted for vertical movement in the water column. Vertical migration was one of several early Cambrian metazoan innovations that led to the biological pump taking on a modern-style architecture over 500 Myr ago.

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