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Dryad

Developmental change in predators drives different community configurations

Cite this dataset

Toscano, Benjamin; Rudolf, Volker (2021). Developmental change in predators drives different community configurations [Dataset]. Dryad. https://doi.org/10.5061/dryad.d7wm37q0v

Abstract

Theoreticians who first observed alternative stable states in simple ecological models warned of grave implications for unexpected and irreversible collapses of natural systems (i.e., regime shifts). Recent ecosystem-level shifts engendering considerable economic losses have validated this concern, positioning bistability at the vanguard of coupled human-environment systems management. While the perturbations that induce regime shifts are known, the ecological forces that uphold alternative stable states are often unresolved or complex and system-specific. Thus, the search continues for general mechanisms that can produce alternative stable states under realistic conditions. Integrating model predictions with long-term zooplankton community experiments, we show that the core feature of ontogenetic development, food-dependent maturation, enables a single community to reach different configurations within the same constant environment. In one configuration, predators regulate prey to foster coexistence, while in the other, prey counterintuitively exclude their predator via maturation-limiting competition. The concordance of these findings with the unique outcome and underlying mechanism of a general model provides empirical evidence that developmental change, a fundamental property of life, can support bistability of natural systems.

Methods

See ReadMe file (Toscano_Rudolf_longterm_zooplankton_readme.txt) and the manuscript resulting from this data set.

Usage notes

See ReadMe file (Toscano_Rudolf_longterm_zooplankton_readme.txt) and the manuscript resulting from this data set.

Funding

Arnold and Mabel Beckman Foundation, Award: Arnold O. Beckman Postdoctoral Fellowship

National Science Foundation, Award: DEB-1256860