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Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
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Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
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Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
Spatial connectivity increases ecosystem resilience towards an ongoing regime shift

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Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
Spatial connectivity increases ecosystem resilience towards an ongoing regime shift
Paper

Spatial connectivity increases ecosystem resilience towards an ongoing regime shift

2023
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Overview
Ecosystem regime shifts can have severe ecological and economic consequences, making it a top priority to understand how to make systems more resilient. Theory predicts that spatial connectivity and the local environment interact to shape resilience, but empirical studies are scarce. Here, we use >7000 fish samplings from the Baltic Sea coast to test this prediction in an ongoing, spatially propagating shift in dominance from predatory fish to an opportunistic mesopredator, with cascading effects throughout the food web. After controlling for the influence of the driver (increasing mesopredator densities), we find that predatory fish habitat connectivity increases resilience towards the shift, but only when densities of fish-eating top predators (seals, cormorants) are low. Resilience also increases with temperature, likely through boosted predatory fish growth and recruitment. These findings confirm theoretical predictions that spatial connectivity and the local environment can act together to shape resilience towards regime shifts.
Publisher
Cold Spring Harbor Laboratory
Subject