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Surprisingly complex community discovered in the mid-Devonian fossil forest at Gilboa
William E Stein1, Christopher M Berry, Linda VanAller Hernick
1Department of Biological Sciences, Binghamton University, New York, NY 13902-6000, USA. stein@binghamton.edu
Early Devonian forests featured diverse tree species, including cladoxylopsids and aneurophytalean progymnosperms. This study reappraises the Gilboa fossil forest, revealing complex ecological interactions and early tree arborescence.
Area of Science:
- Paleobotany
- Paleoecology
- Devonian Period Ecology
Background:
- The origin of trees in the Mid-Devonian epoch significantly altered terrestrial ecosystems and global processes.
- The Gilboa fossil forest in New York is a key site for understanding early forest ecology, but its interpretation has been limited.
- Previous studies interpreted the Gilboa site as a simple swamp dominated by cladoxylopsids (Eospermatopteris).
Purpose of the Study:
- To reappraise the paleoecology of the Gilboa fossil forest using modern methods.
- To clarify the composition and ecological interactions within this early Devonian forest.
- To investigate the habit and ecological role of aneurophytalean progymnosperms and lycopsids.
Main Methods:
- Excavation and mapping of a 1,200 m^2 area at the Riverside Quarry, Gilboa.
- Detailed analysis of fossil root systems and associated plant structures in situ.
- Identification and characterization of different plant groups, including cladoxylopsids, aneurophytaleans, and lycopsids.
Main Results:
- Discovery of numerous Eospermatopteris root systems in life position within a mixed-age stand.
- Identification of large aneurophytalean progymnosperms with woody rhizomes growing among Eospermatopteris trees.
- Evidence for arborescence in lycopsids, extending their known range and ecological significance.
- The rooting horizon is a sandy mudstone with limited root penetration, indicating a wetland coastal plain environment subject to disturbance.
Conclusions:
- The Gilboa forest was a mixed-group ecosystem, more complex than previously thought.
- Aneurophytaleans were significant components of early forests, possessing wood produced by a bifacial vascular cambium.
- These findings provide fundamental insights into early forest paleoecology and have global implications for interpreting Devonian ecosystems.
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