Miocene to present turnover of molluscan assemblages: Insights into coastal-marine ecosystem evolution along the Peruvian Margin
- Rodrigo Medina-Franco,
- Thomas J. Devries,
- Matthieu Carré,
- Rodolfo Salas-Gismondi,
- ,
- Diana Ochoa
- Universidad Peruana Cayetano Heredia,
- University of Washington,
- Sorbonne Université,
- ,
- University of Salamanca
Open access
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 205-220 (16 pages)Journal (Volume, Issue Number)
Paleobiology (Volume 52, Issue 2)Publication milestones
- Accepted/In press - 2026
- Published - 01/05/2026
Publication status
ISSN
0094-8373Publication IDs
- Scopus: 105031557905
Abstract
Over the past 10 million years, coastal-marine settings along the Peruvian Margin have undergone profound geographic and oceanographic transformations, resulting in extensive changes in coastal-marine communities. While mollusk taxonomy research is slowly being integrated into ecosystem-wide analyses, which have historically centered on vertebrates, a long-term chronostratigraphically controlled analysis of molluscan diversity and compositional changes has not been undertaken for this region. We compiled a database covering 152 species, 97 genera, and 51 families of mollusk fossils from the Peruvian Margin (13-16°S) to assess long-term diversification patterns and faunal turnover from the late Miocene to the present. We identified two distinctive molluscan assemblages. The first, dating to the late Miocene (10-6 Ma), underwent a substantial shift during the Mio-Pliocene transition (6-4 Ma), culminating in a second assemblage more akin to modern counterparts. This shift resulted in an increase in diversity, with the younger assemblage (6-0 Ma) exhibiting greater genus richness than the former late Miocene assemblage. The turnover at 6-4 Ma was driven by peaks in bivalve origination (6-5 Ma) along with elevated extinction rates for gastropods (6-5 Ma) and bivalves (5-4 Ma). Ecological analyses revealed that no single ecological trait consistently changed during this interval, indicating that the turnover resulted from a broad reorganization of ecological strategies. We propose that the major molluscan turnover during the late Miocene-early Pliocene is associated with geomorphological changes related to the Andean uplift, the disappearance of semi-embayments, and a sea-level rise.
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- SDG 14 Life Below Water
