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Tracking the rise of eukaryotes to ecological dominance with zinc isotopes.

Authors :
Isson TT
Love GD
Dupont CL
Reinhard CT
Zumberge AJ
Asael D
Gueguen B
McCrow J
Gill BC
Owens J
Rainbird RH
Rooney AD
Zhao MY
Stueeken EE
Konhauser KO
John SG
Lyons TW
Planavsky NJ
Source :
Geobiology [Geobiology] 2018 Jul; Vol. 16 (4), pp. 341-352. Date of Electronic Publication: 2018 Jun 05.
Publication Year :
2018

Abstract

The biogeochemical cycling of zinc (Zn) is intimately coupled with organic carbon in the ocean. Based on an extensive new sedimentary Zn isotope record across Earth's history, we provide evidence for a fundamental shift in the marine Zn cycle ~800 million years ago. We discuss a wide range of potential drivers for this transition and propose that, within available constraints, a restructuring of marine ecosystems is the most parsimonious explanation for this shift. Using a global isotope mass balance approach, we show that a change in the organic Zn/C ratio is required to account for observed Zn isotope trends through time. Given the higher affinity of eukaryotes for Zn relative to prokaryotes, we suggest that a shift toward a more eukaryote-rich ecosystem could have provided a means of more efficiently sequestering organic-derived Zn. Despite the much earlier appearance of eukaryotes in the microfossil record (~1700 to 1600 million years ago), our data suggest a delayed rise to ecological prominence during the Neoproterozoic, consistent with the currently accepted organic biomarker records.<br /> (© 2018 John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
1472-4669
Volume :
16
Issue :
4
Database :
MEDLINE
Journal :
Geobiology
Publication Type :
Academic Journal
Accession number :
29869832
Full Text :
https://doi.org/10.1111/gbi.12289