A Sediment Trap Evaluation of B/Ca as a Carbonate System Proxy in Asymbiotic and Nondinoflagellate Hosting Planktonic Foraminifera

The ratio of boron to calcium (B/Ca) in a subset of foraminifera has been shown to covary with seawater carbonate chemistry, making this geochemical signature a promising proxy for carbon cycle science. Some studies suggest complications with the B/Ca proxy in photosymbiont‐bearing planktonic forami...

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Veröffentlicht in:Paleoceanography and paleoclimatology 2020-02, Vol.35 (2), p.n/a, Article 2019
Hauptverfasser: Osborne, Emily B., Umling, Natalie E., Bizimis, Michael, Buckley, Wayne, Sadekov, Aleksey, Tappa, Eric, Marshall, Brittney, Sautter, Leslie R., Thunell, Robert C.
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Sprache:eng
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Zusammenfassung:The ratio of boron to calcium (B/Ca) in a subset of foraminifera has been shown to covary with seawater carbonate chemistry, making this geochemical signature a promising proxy for carbon cycle science. Some studies suggest complications with the B/Ca proxy in photosymbiont‐bearing planktonic foraminifera, while relatively few studies have investigated B/Ca in species that lack large dinoflagellate symbionts. For the first time, we use a sediment trap time series to evaluate B/Ca of subtropical and subpolar planktonic foraminifera species that are asymbiotic (Globigerina bulloides and Neogloboquadrina incompta) and a species that hosts small intrashell photosymbionts (Neogloboquadrina dutertrei). We find that B/Ca measurements across size fractions indicate overall little to no size‐dependent uptake of boron that has previously been reported in some symbiont‐bearing foraminifera. Neogloboquadrina incompta and N. dutertrei B/Ca are strongly correlated with calcite saturation, pH, and carbonate ion concentration, which is in good agreement with the limited number of published core top results. While G. bulloides B/Ca trends with seasonal fluctuations in carbonate chemistry, during discrete periods considerable B/Ca offsets occur when a cryptic G. bulloides species is known to be seasonally present within the region. We confirm presence and significant B/Ca offset between cryptic species by individual LA‐ICP‐MS analyses. This finding calls into question the use of traditional morphological classification to lump what might be genetically distinct species for geochemical analyses. Our overall results highlight the utility of G. bulloides, N. incompta, and N. dutertrei B/Ca while bringing to light new considerations regarding divergent geochemistry of cryptic species. Key Points Analyzed populations of Neogloboquadrina foraminifera show no size‐dependent offsets in B/Ca and significant correlations with carbonate system variables B/Ca of individual G. bulloides analyzed by LA‐ICP‐MS indicates that local cryptic species have significant B/Ca offsets Divergent geochemistry of cryptic species calls into question the use of traditional species classification for B/Ca analysis
ISSN:2572-4517
2572-4525
DOI:10.1029/2019PA003682