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  4. Diving Deeper: Leveraging the Chondrichthyan Fossil Record to Investigate Environmental, Ecological, and Biological Change
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Diving Deeper: Leveraging the Chondrichthyan Fossil Record to Investigate Environmental, Ecological, and Biological Change

Persistent URL
https://hdl.handle.net/10456/59363
Author(s)
Kim, Sora L.
Balk, Meghan A.
Sibert, Elizabeth C.
Whitenack, Lisa
Date Issued
December 23, 2024
Abstract
The extensive chondrichthyan fossil record spans 400+ million years and has a global distribution. Paleontological studies provide a foundation of description and taxonomy to support deeper forays into ecology and evolution considering geographic, morphologic, and functional changes through time with nonanalog species and climate states. Although chondrichthyan teeth are most studied, analyses of dermal denticle metrics and soft tissue imprints are increasing. Recent methodological advances in morphology and geochemistry are elucidating fine-scale details, whereas large datasets and ecological modeling are broadening taxonomic, temporal, and geographic perspectives. The combination of ecological metrics and modeling with environmental reconstruction and climate simulations is opening new horizons to explore form and function, demographic dynamics, and food web structure in ancient marine ecosystems. Ultimately, the traits and taxa that endured or perished during the many catastrophic upheaval events in Earth’s history contribute to conservation paleobiology, which is a much-needed perspective for extant chondrichthyans. ■ The longevity and abundance of the chondrichthyan fossil record elucidates facets of ecological, evolutionary, and environmental histories. ■ Though lacking postcranial, mineralized skeletons, dental enameloid and dermal denticles exquisitely preserve morphology and geochemistry. ■ Technical advances in imaging, geochemistry, and modeling clarify the linkages between form and function with respect to physiology, diet, and environment. ■ Conservation efforts can benefit from the temporal and spatial perspective of chondrichthyan persistence through past global change events.
Journal
Annual Review of Earth and Planetary Sciences
Department
Biology
Citation
Annu. Rev. Earth Planet. Sci. 2025. 53:223–50
Publisher
Annual Reviews
Version of Article
Published version
DOI
10.1146/annurev-earth-040523010455
ISSN
0084-6597
1545-4495
Rights
Copyright © 2025 by the author(s). This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. See credit lines of images or other third-party material in this article for license information.
Subjects

Extinction

Shark

Morphology

Isotope

Diversity

Paleobiology

File(s)
Thumbnail Image
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2025_Whitenack_Diving.pdf

Size

2.43 MB

Format

Adobe PDF

Checksum (MD5)

eb8dc9a10bc8d1a90a780a4c157cb96e

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