Konservat-Lagersta & uml;tten provide exceptional records of past ecosystems, yet the environmental and climatic processes governing their formation in extreme climatic regimes remain a significant, unresolved conundrum. Here we present a novel, process-based mechanism for the Villaggio del Pescatore Konservat-Lagersta & uml;tte (northeastern Italy; Late Cretaceous, 80 Ma), which preserves a diverse terrestrial and aquatic biota. Integrating high resolution synchrotron micro-analyses, bulk geochemistry, detailed taphonomy and palaeoclimate simulations we identify a dynamic, monsoon-paced tidal flat ecosystem within a carbonate coastal margin. Field and core records comprise metrescale packages of laterally persistent light-dark laminae; microstratigraphic, spectral and statistical analyses indicate a semidiurnal tidal regime with neap-spring modulation. MicroXRF/XRD mapping reveals that individual microlaminae within couplets share the same elemental inventory refuting a seasonal varve origin. Laminae chronometry, tied to the tidal interpretation, constrains net accumulation of the fossil bearing rhythmites to decadal (similar to 40 year) timescales. Geochemical proxies record alternating terrigenous rich, high TOC intervals and drier, better oxygenated intervals. Palaeoclimate model ensembles diagnose a vigorous, summer dominated monsoon domain at similar to 29 degrees N under greenhouse boundary conditions. We document that episodic monsoon enhanced flood and tropical cyclone pulses delivered sediment, nutrients, carcasses and plant debris to a microbially active, carbonate tidal flat; microbial mats rapidly stabilised and promoted early cementation, enabling exceptional soft tissue preservation. We propose a genetic model in which monsoon-cyclone forcing, tidal trapping and microbial sealing combine to produce decadal, daily resolved vertebrate Lagersta & uml;tten in greenhouse settings, offering predictive targets for similar deposits and deep time analogues for modern coastal change.

Fanti, F., Consorti, L., Muscioni, M., Baldassari, L., Dinelli, E., Polentarutti, M., et al. (2026). Climate-extreme-driven genesis of a Cretaceous dinosaur Lagerstätte. GLOBAL AND PLANETARY CHANGE, 265, 105589-105589 [10.1016/j.gloplacha.2026.105589].

Climate-extreme-driven genesis of a Cretaceous dinosaur Lagerstätte

Fanti, Federico
Primo
Supervision
;
Muscioni, Marco
Conceptualization
;
Dinelli, Enrico
Conceptualization
;
2026

Abstract

Konservat-Lagersta & uml;tten provide exceptional records of past ecosystems, yet the environmental and climatic processes governing their formation in extreme climatic regimes remain a significant, unresolved conundrum. Here we present a novel, process-based mechanism for the Villaggio del Pescatore Konservat-Lagersta & uml;tte (northeastern Italy; Late Cretaceous, 80 Ma), which preserves a diverse terrestrial and aquatic biota. Integrating high resolution synchrotron micro-analyses, bulk geochemistry, detailed taphonomy and palaeoclimate simulations we identify a dynamic, monsoon-paced tidal flat ecosystem within a carbonate coastal margin. Field and core records comprise metrescale packages of laterally persistent light-dark laminae; microstratigraphic, spectral and statistical analyses indicate a semidiurnal tidal regime with neap-spring modulation. MicroXRF/XRD mapping reveals that individual microlaminae within couplets share the same elemental inventory refuting a seasonal varve origin. Laminae chronometry, tied to the tidal interpretation, constrains net accumulation of the fossil bearing rhythmites to decadal (similar to 40 year) timescales. Geochemical proxies record alternating terrigenous rich, high TOC intervals and drier, better oxygenated intervals. Palaeoclimate model ensembles diagnose a vigorous, summer dominated monsoon domain at similar to 29 degrees N under greenhouse boundary conditions. We document that episodic monsoon enhanced flood and tropical cyclone pulses delivered sediment, nutrients, carcasses and plant debris to a microbially active, carbonate tidal flat; microbial mats rapidly stabilised and promoted early cementation, enabling exceptional soft tissue preservation. We propose a genetic model in which monsoon-cyclone forcing, tidal trapping and microbial sealing combine to produce decadal, daily resolved vertebrate Lagersta & uml;tten in greenhouse settings, offering predictive targets for similar deposits and deep time analogues for modern coastal change.
2026
Fanti, F., Consorti, L., Muscioni, M., Baldassari, L., Dinelli, E., Polentarutti, M., et al. (2026). Climate-extreme-driven genesis of a Cretaceous dinosaur Lagerstätte. GLOBAL AND PLANETARY CHANGE, 265, 105589-105589 [10.1016/j.gloplacha.2026.105589].
Fanti, Federico; Consorti, Lorenzo; Muscioni, Marco; Baldassari, Lorenzo; Dinelli, Enrico; Polentarutti, Maurizio; Bais, Giorgio; Farnsworth, Alexande...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1073910
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