An expanded database of Southern Hemisphere surface sediment dinoflagellate cyst assemblages and their oceanographic affinities

Publication date

2023-06-02

Authors

Thöle, Lena M.ISNI 0000000512624125
Nooteboom, P.D.ISNI 0000000492796068
Hou, SuningISNI 0000000506748738
Wang, Rujian
Nie, Senyan
Michel, Elisabeth
Sauermilch, IsabelORCID 0000-0003-4639-6699ISNI 0000000507309729
Marret, Fabienne
Sangiorgi, FrancescaORCID 0000-0003-4233-6154ISNI 0000000388191894
Bijl, PeterORCID 0000-0002-1710-4012ISNI 0000000394379738

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Document Type

Article
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cc_by

Abstract

Dinoflagellate cyst assemblages present a valuable proxy to infer paleoceanographic conditions, yet factors influencing geographic distributions of species remain largely unknown, especially in the Southern Ocean. Strong lateral transport, sea-ice dynamics, and a sparse and uneven geographic distribution of surface sediment samples have limited the use of dinocyst assemblages as a quantitative proxy for paleo-environmental conditions such as sea surface temperature (SST), nutrient concentrations, salinity, and sea ice (presence). In this study we present a new set of surface sediment samples (nCombining double low line66) from around Antarctica, doubling the number of Antarctic-proximal samples to 100 (dataset wsi_100) and increasing the total number of Southern Hemisphere samples to 655 (dataset sh_655). Additionally, we use modelled ocean conditions and apply Lagrangian techniques to all Southern Hemisphere sample stations to quantify and evaluate the influence of lateral transport on the sinking trajectory of microplankton and, with that, to the inferred ocean conditions. k-means cluster analysis on the wsi_100 dataset demonstrates the strong affinity of Selenopemphix antarctica with sea-ice presence and of Islandinium spp. with low-salinity conditions. For the entire Southern Hemisphere, the k-means cluster analysis identifies nine clusters with a characteristic assemblage. In most clusters a single dinocyst species dominates the assemblage. These clusters correspond to well-defined oceanic conditions in specific Southern Ocean zones or along the ocean fronts. We find that, when lateral transport is predominantly zonal, the environmental parameters inferred from the sea floor assemblages mostly correspond to those of the overlying ocean surface. In this case, the transport factor can thus be neglected and will not represent a bias in the reconstructions. Yet, for some individual sites, e.g. deep-water sites or sites under strong-current regimes, lateral transport can play a large role. The results of our study further constrain environmental conditions represented by dinocyst assemblages and the location of Southern Ocean frontal systems.

Keywords

Offshore wilkes land, Antarctic ice-sheet, Southwest pacific, Overturning circulation, Sea, Cysts, Reconstruction, Framework, Holocene, Closure, Palaeontology

Citation

Thöle, L M, Nooteboom, P D, Hou, S, Wang, R, Nie, S, Michel, E, Sauermilch, I, Marret, F, Sangiorgi, F & Bijl, P K 2023, 'An expanded database of Southern Hemisphere surface sediment dinoflagellate cyst assemblages and their oceanographic affinities', Journal of Micropalaeontology, vol. 42, no. 1, pp. 35-56. https://doi.org/10.5194/jm-42-35-2023