Bolton, Annette; Baker, Joel A.; Dunbar, Gavin B.; Carter, Lionel; Smith, Euan G. C.; Neil, Helen L. (2011): Environmental versus biological controls on Mg/Ca variability in Globigerinoides ruber (white) from core top and plankton tow samples in the Southwest Pacific Ocean. American Geophysical Union, Washington, DC, United States, Paleoceanography, 26 (2), georefid:2013-035831

Abstract:
Laser ablation inductively coupled plasma mass spectrometry was used to analyze the individual chambers from tests of foraminiferal fossil and plankton tow Globigerinoides ruber from the southwest Pacific Ocean, from latitudes 3 degrees S to 42 degrees S. The variability of Mg/Ca between chambers of an individual (intraindividual) and individuals of the same population (interindividual), is such that when converted to temperature, the extent of intra-individual and interindividual variability appears to exceed that attributable to either calcification or seasonal temperature variability. The pooled mean chamber Mg/Ca from each core top and plankton tow site demonstrates a significant (p < 0.05) positive correlation with temperature. We derive chamber-specific calibrations where Mg/Ca (sub Ch_F-2) = 0.798 exp (super 0.070 T) , Mg/Ca (sub Ch_F-1) = 0.891 exp (super 0.067 T) and Mg/Ca (sub Ch_F) = 0.590 exp (super 0.072 T) . We do not observe any bias between the two morphotypes Gs. ruber ruber and Gs. ruber pyramidalis. The chamber-specific calibrations potentially offset Mg/Ca-based temperature reconstructions if used on bulk (whole) test Mg/Ca or applied to misidentified chambers. Nevertheless, these calibrations can be used to reliably estimate sea surface temperature. Although there is a general overriding temperature control on Mg/Ca, we show that removal of the effect of temperature at each site reveals a lognormal Mg/Ca distribution. This suggests that Mg/Ca variability at each site is also affected by biological mechanism(s) that may control the distribution of interindividual Mg/Ca. In addition, other TE/Ca data (Al/Ca and Mn/Ca) from laser ablation trace element depth profiles can be used to identify detrital or diagenetic phases that may bias the trace element/Ca signal.
Coverage:
West: -171.2956 East: -171.2956 North: -41.4710 South: -41.4710
Relations:
Expedition: 181
Site: 181-1123
Data access:
Provider: SEDIS Publication Catalogue
Data set link: http://sedis.iodp.org/pub-catalogue/index.php?id=10.1029/2010PA001924 (c.f. for more detailed metadata)
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