Version 5

Data for: Fire history and weather interact to determine extent and synchrony of mast-seeding in rhizomatous scrub oaks of Florida

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Pesendorfer, Mario;Bowman, Reed;Gratzer, Georg;Pruett, Shane;Tringali, Angela;Fitzpatrick, John

Description

In disturbance-prone ecosystems, fitness consequences of plant reproductive strategies are often determined by the relative timing of seed production and disturbance events, but the role of disturbances as proximate drivers of seed production has been overlooked. We use long-term data on seed production in Quercus chapmanii, Q. geminata, and Q. inopina, rhizomatous oaks found in Southcentral Florida’s oak scrub, to investigate the role of fire history and its interaction with weather in shaping acorn production and its synchrony. Acorn production increased with the time since last fire, combined with additive or interactive effects of spring precipitation (+) or drought (–). Furthermore, multiple matrix regression models revealed that ramet pairs with shared fire history were more synchronous in seed production than ones that burned in different years. Long-term trends suggest that increasingly drier spring weather, in interaction with fire frequency, may drive a decline of seed production. Such declines could affect the community of acorn-reliant vertebrates in the Florida scrub, including endangered Florida scrub-jays (Aphelocoma coerulescens). These results illustrate that fire can function as a proximate driver of seed production in mast-seeding species, highlighting the increasingly recognized importance of interactions among reproductive strategies and disturbance regimes in structuring plant populations and communities.

Citations (1)

Mentions (0)

Metrics

Dataset Index

1.1

FAIR Score

69%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Dryad

Assigned Domain

Subfield

Parasitology

Field

Immunology and Microbiology

Domain

Life Sciences

Confidence Score

89%

Source

Open Alex

Keywords

FOS: Biological sciences

Normalization Factors

FT

30.77

CTw

1.00

MTw

1.00