Quantitative analysis of Upper Miocene Mediterranean reef carbonates: A tool for reconstructing palaeoenvironmental gradients
Articolo
Data di Pubblicazione:
2026
Citazione:
Quantitative analysis of Upper Miocene Mediterranean reef carbonates: A tool for reconstructing palaeoenvironmental gradients / Coletti, G., Vimercati, A., Bosellini, F.R., Mariani, L., Guido, A., Vescogni, A., Reolid, J., Auer, G., Basso, D., Collareta, A., Bosio, G., Bialik, O.M.. - In: PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY. - ISSN 0031-0182. - 699:(2026), pp. 1-19. [10.1016/j.palaeo.2026.114023]
Abstract:
During latest Miocene times the Mediterranean Sea main connection with the global ocean was through the
Atlantic, just as it is today. This configuration could have likely resulted in a pronounced longitudinal envi-
ronmental gradient, with warm and highly oligotrophic waters in the east, and cooler, less oligotrophic condi-
tions in the west (a scenario resembling modern conditions). This setting provides a natural laboratory to test the
effectiveness of quantitative microfacies analysis in tracking palaeoenvironmental gradients. Two approaches
were compared: the presence/absence of carbonate producers assessed on the basis of literature data and a
quantitative skeletal assemblage analysis of reef sites spanning the Western, Central, and Eastern Mediterranean.
While the presence/absence approach only offers a broad environmental overview, the quantitative analysis
better differentiates between the eastern and western settings. The eastern sector displays a higher relevance of
symbiont-bearing foraminifera, suggesting warmer conditions. In contrast, the western sector is comparatively
richer in heterotrophic organisms, likely reflecting a higher nutrient availability and cooler water. These results
support the reliability of quantitative microfacies analysis and provide a framework for comparing reef-bearing,
carbonate systems across the Mediterranean within climatic homogeneous time intervals. Both approaches
suggest that these carbonate factories represent subtropical, modern-like, biotic assemblages adapted to the
cooler, oligotrophic, and likely semi-restricted conditions that were prevalent prior to the Messinian Salinity
Crisis.
Atlantic, just as it is today. This configuration could have likely resulted in a pronounced longitudinal envi-
ronmental gradient, with warm and highly oligotrophic waters in the east, and cooler, less oligotrophic condi-
tions in the west (a scenario resembling modern conditions). This setting provides a natural laboratory to test the
effectiveness of quantitative microfacies analysis in tracking palaeoenvironmental gradients. Two approaches
were compared: the presence/absence of carbonate producers assessed on the basis of literature data and a
quantitative skeletal assemblage analysis of reef sites spanning the Western, Central, and Eastern Mediterranean.
While the presence/absence approach only offers a broad environmental overview, the quantitative analysis
better differentiates between the eastern and western settings. The eastern sector displays a higher relevance of
symbiont-bearing foraminifera, suggesting warmer conditions. In contrast, the western sector is comparatively
richer in heterotrophic organisms, likely reflecting a higher nutrient availability and cooler water. These results
support the reliability of quantitative microfacies analysis and provide a framework for comparing reef-bearing,
carbonate systems across the Mediterranean within climatic homogeneous time intervals. Both approaches
suggest that these carbonate factories represent subtropical, modern-like, biotic assemblages adapted to the
cooler, oligotrophic, and likely semi-restricted conditions that were prevalent prior to the Messinian Salinity
Crisis.
Tipologia CRIS:
Articolo su rivista
Keywords:
Reef. Corals. Benthic foraminifera. Messinian. Tortonian. Carbonate Factory
Elenco autori:
Coletti, Giovanni; Vimercati, Alberto; Bosellini, Francesca R.; Mariani, Luca; Guido, Adriano; Vescogni, Alessandro; Reolid, Jesús; Auer, Gerald; Basso, Daniela; Collareta, Alberto; Bosio, Giulia; Bialik, Or Mordecai
Link alla scheda completa:
Link al Full Text:
Pubblicato in: