Related Experiment Video
Updated: Apr 23, 2026

Measuring the Structure, Composition, and Change of Underwater Environments with Large-area Imaging
Published on: April 18, 2025
Long-distance interactions regulate the structure and resilience of coastal ecosystems
Johan van de Koppel1, Tjisse van der Heide, Andrew H Altieri
1Department of Spatial Ecology, Royal Netherlands Institute for Sea Research, 4401 NT Yerseke, The Netherlands;
Abstract:
Mounting evidence indicates that spatial interactions are important in structuring coastal ecosystems. Until recently, however, most of this work has been focused on seemingly exceptional systems that are characterized by regular, self-organized patterns. In this review, we document that interactions that operate at long distances, beyond the direct neighborhood of individual organisms, are more common and have much more far-reaching implications for coastal ecosystems than was previously realized. We review studies from a variety of ecosystem types-including cobble beaches, mussel beds, coral reefs, seagrass meadows, and mangrove forests-that reveal a startling interplay of positive and negative interactions between habitats across distances of up to a kilometer. In addition to classical feeding relations, alterations of physical conditions constitute an important part of these long-distance interactions. This entanglement of habitats has crucial implications for how humans manage coastal ecosystems, and evaluations of anthropogenic impact should explicitly address long-distance and system-wide effects before we deem these human activities to be causing little harm.
Related Concept Videos
Marine Microbial Ecology
Keystone Species
Freshwater Microbial Ecology
Ecological Disturbance
Habitat Fragmentation
Short-distance Transport of Resources

