Angela Girone, Antonio Caruso, Marina Addante, Claudia Cosentino, Timothy D. Herbert, Maria Marino, Giovanna Scopelliti, Patrizia Maiorano
A high-resolution analysis of planktonic foraminifera assemblages at the Monte San Nicola GSSP section (Southern Sicily), the type-section for the Lower Pleistocene Gelasian Stage, has been performed. The results on the assemblages are discussed in detail from MIS G4 to the onset of MIS 99 (between ~2.7 and 2.5 Ma) and are integrated with previously published records of stable oxygen isotopes, alkenones, calcareous nannofossils and geochemistry from the same section. The main findings suggest that: i) planktonic foraminifera primarily responded to variations in surface water temperatures and nutricline depth, modulated by obliquity and summer insolation forcing; ii) the water column dynamics were influenced by both low- and high-latitude climate variability, capturing seasonal climate signals; iii) MIS 104 is confirmed to register the first appearance of a strong glacial signal in the Mediterranean during the Pliocene-Pleistocene transition; and iv) following MIS 104, enhanced seasonality in the marine environment was established, driven by a decrease in winter temperatures consistent with climate changes observed at mid-latitudes in the North Atlantic. • Planktonic foraminifera document Mediterranean surface water variability at the PPt. • Assemblages respond to SST and nutricline depth driven by obliquity and precession. • North African monsoon drove seasonal water column changes during sapropel formation. • Starting from MIS 104 Mediterranean registered the North Atlantic climate dynamics. • Winter cooling after MIS 104 indicates enhanced Mediterranean SST seasonality.