Tail‐dependence of masting synchrony results in continent‐wide seed scarcity

Author:

Szymkowiak Jakub12,Foest Jessie3,Hacket‐Pain Andrew3,Journé Valentin1ORCID,Ascoli Davide4ORCID,Bogdziewicz Michał1ORCID

Affiliation:

1. Faculty of Biology, Forest Biology Center, Institute of Environmental Biology Adam Mickiewicz University Poznan Poland

2. Population Ecology Research Unit, Faculty of Biology, Institute of Environmental Biology Adam Mickiewicz University Poznan Poland

3. Department of Geography and Planning, School of Environmental Sciences University of Liverpool Liverpool UK

4. Department of Agriculture, Forest and Food Sciences University of Torino Grugliasco TO Italy

Abstract

AbstractSpatial synchrony may be tail‐dependent, meaning it is stronger for peaks rather than troughs, or vice versa. High interannual variation in seed production in perennial plants, called masting, can be synchronized at subcontinental scales, triggering extensive resource pulses or famines. We used data from 99 populations of European beech (Fagus sylvatica) to examine whether masting synchrony differs between mast peaks and years of seed scarcity. Our results revealed that seed scarcity occurs simultaneously across the majority of the species range, extending to populations separated by distances up to 1800 km. Mast peaks were spatially synchronized at distances up to 1000 km and synchrony was geographically concentrated in northeastern Europe. Extensive synchrony in the masting lower tail means that famines caused by beech seed scarcity are amplified by their extensive spatial synchrony, with diverse consequences for food web functioning and climate change biology.

Funder

H2020 European Research Council

Publisher

Wiley

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