Geography of masting creates greater synchrony in seed scarcity than in seed abundance
成果类型:
Article
署名作者:
Szymkowiak, Jakub; Foest, Jessie J.; Dyderski, Marcin K.; Jastrzebowski, Szymon; Barczyk, Maciej K.; Hacket-Pain, Andrew; Bogdziewicz, Michal
署名单位:
Adam Mickiewicz University; Adam Mickiewicz University; Polish Academy of Sciences; Forest Research Institute; University of Liverpool
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2518918122
发表日期:
2025-12-23
页码:
e2518918122
关键词:
Moran effect
mast seeding
spatial synchrony
seed production
tail-dependent synchrony
life-history
scale
DYNAMICS
environments
populations
weather
rodent
forest
摘要:
Interannually highly variable and synchronized production of large seed crops by perennial plants, called masting, drives resource pulses and famines with cascading effects on food webs. While the spatial scale of masting synchrony is well documented, it remains unclear how synchrony differs between years of seed abundance and failure, and how such dynamics extend across species and space. These gaps are important to resolve, as they determine the magnitude and spatial extent of masting effects on food webs. Using a 36-y dataset from 431 sites spanning seven dominant tree species in temperate Europe, we provide evidence that seed failures are more spatially synchronized than mast peaks, indicating that regional coherence in seed production is structured primarily by reproductive failure. Among-species synchrony was localized. This suggests that in temperate forests, mobile seed consumers are unlikely to experience coordinated starvation-satiation cycles, in contrast to highly synchronous tropical dipterocarp systems. From an applied perspective, failure years affect seed availability over broad regions, limiting sourcing options for afforestation and restoration, and underscoring the value of spatially explicit masting forecasting. Because mast peaks and failures differ fundamentally in their food web consequences, our findings highlight the need to better understand and anticipate the ecological impacts of synchronized seed scarcity.
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