Early colonization of the deep-sea bottom—The protracted build-up of an ecosystem

L Luis A. Buatois (Department of Geological Sciences, University of Saskatchewan) M M. Gabriela Mángano (Department of Geological Sciences, University of Saskatchewan) M Maximiliano Paz (Department of Geological Sciences, University of Saskatchewan) N Nicholas J. Minter (School of the Environment and Life Sciences, University of Portsmouth) K Kai Zhou

Abstract

Our understanding of the patterns and processes behind the evolution of deep-marine ecosystems is limited because the body-fossil record of the deep sea is poor. However, that gap in knowledge may be filled as deposits are host to diverse and abundant trace fossils that record the activities of benthic deep-marine organisms. Here, we built a global dataset of trace-fossil occurrences from a comprehensive survey of 720 Ediacaran–Devonian units and show that the establishment of a modern-style deep-marine benthic ecosystem was protracted and coincident with global cooling and increase in oxygenation during the Ordovician. The formation of open burrows may have increased bioirrigation in the uppermost sediment zone, promoting ventilation and generating an ecosystem engineering feedback loop between bioturbation and pore-water oxygenation. Sharp changes in deep-marine bioturbation during the Devonian may have originated from oxygen variations resulting from climate-controlled oceanic circulation.

Article Details

Volume / Issue Vol. 122, Issue 8
Published February 25, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

L

Luis A. Buatois

Department of Geological Sciences, University of Saskatchewan

M

M. Gabriela Mángano

Department of Geological Sciences, University of Saskatchewan

M

Maximiliano Paz

Department of Geological Sciences, University of Saskatchewan

N

Nicholas J. Minter

School of the Environment and Life Sciences, University of Portsmouth

K

Kai Zhou