The Roles of Space and Food-Web Complexity in Mediating Ecological Recovery.

Authors: Gawecka, K.A., Barbour, M.A., Bullock, J.M., Bascompte, J.

Journal: Ecol Lett

Publication Date: 11/2025

Volume: 28

Issue: 11

Pages: e70254

eISSN: 1461-0248

DOI: 10.1111/ele.70254

Abstract:

Landscape-scale ecological restoration is a key strategy for halting and reversing biodiversity decline. However, ensuring the long-term sustainability of restoration efforts requires guiding the recovery of complex ecological systems with many interdependent species at a landscape scale. Due to these challenges, our understanding of recovery trajectories remains limited. Using metacommunity models and experiments, we explore how the spatial configuration of communities and food-web complexity jointly influence species recovery at different spatial scales. We find that the number and spatial placement of communities affect the colonisation of empty habitat patches, but do not influence population recovery in patches where communities are introduced. Food-web complexity reduces the recovery of lower trophic levels. However, this negative effect may be partially mitigated at higher levels of food-web complexity. Our results demonstrate that the joint consideration of spatial configuration and species interactions could enhance the effectiveness of restoration actions.

Source: PubMed

The Roles of Space and Food-Web Complexity in Mediating Ecological Recovery

Authors: Gawecka, K.A., Barbour, M.A., Bullock, J.M., Bascompte, J.

Journal: ECOLOGY LETTERS

Publication Date: 19/11/2025

Volume: 28

Issue: 11

eISSN: 1461-0248

ISSN: 1461-023X

DOI: 10.1111/ele.70254

Source: Web of Science

The Roles of Space and Food-Web Complexity in Mediating Ecological Recovery.

Authors: Gawecka, K.A., Barbour, M.A., Bullock, J.M., Bascompte, J.

Journal: Ecology letters

Publication Date: 11/2025

Volume: 28

Issue: 11

Pages: e70254

eISSN: 1461-0248

ISSN: 1461-023X

DOI: 10.1111/ele.70254

Abstract:

Landscape-scale ecological restoration is a key strategy for halting and reversing biodiversity decline. However, ensuring the long-term sustainability of restoration efforts requires guiding the recovery of complex ecological systems with many interdependent species at a landscape scale. Due to these challenges, our understanding of recovery trajectories remains limited. Using metacommunity models and experiments, we explore how the spatial configuration of communities and food-web complexity jointly influence species recovery at different spatial scales. We find that the number and spatial placement of communities affect the colonisation of empty habitat patches, but do not influence population recovery in patches where communities are introduced. Food-web complexity reduces the recovery of lower trophic levels. However, this negative effect may be partially mitigated at higher levels of food-web complexity. Our results demonstrate that the joint consideration of spatial configuration and species interactions could enhance the effectiveness of restoration actions.

Source: Europe PubMed Central