TY - JOUR
T1 - Landscape diversity promotes landscape functioning in North America
AU - Mayor, Sarah
AU - Altermatt, Florian
AU - Crowther, Thomas W.
AU - Hordijk, Iris
AU - Landauer, Simon
AU - Oehri, Jacqueline
AU - Chacko, Merin Reji
AU - Schaepman, Michael E.
AU - Schmid, Bernhard
AU - Niklaus, Pascal A.
PY - 2025/1/16
Y1 - 2025/1/16
N2 - Biodiversity–ecosystem functioning experiments have established generally positive species richness-productivity relationships in plots of single ecosystem types, typically grassland or forest. However, it remains unclear whether these findings apply in real-world landscapes that resemble a heterogeneous mosaic of different ecosystem and plant types that interact through biotic and abiotic processes. Here, we show that landscape-level diversity, measured as number of land-cover types (different ecosystems) per 250×250 m, is positively related to landscape-wide remotely-sensed primary production across all of North America, covering 16 of 18 ecoregions of Earth. At higher landscape diversity, productivity was temporally more stable, and 20-year greening trends were accelerated. These effects occurred independent of local species diversity, suggesting emergent mechanisms at hitherto neglected levels of biological organization. Specifically, mechanisms related to interactions among land-cover types unfold at the scale of entire landscapes, similar to, but not necessarily resulting from, interactions between species within single ecosystems.
AB - Biodiversity–ecosystem functioning experiments have established generally positive species richness-productivity relationships in plots of single ecosystem types, typically grassland or forest. However, it remains unclear whether these findings apply in real-world landscapes that resemble a heterogeneous mosaic of different ecosystem and plant types that interact through biotic and abiotic processes. Here, we show that landscape-level diversity, measured as number of land-cover types (different ecosystems) per 250×250 m, is positively related to landscape-wide remotely-sensed primary production across all of North America, covering 16 of 18 ecoregions of Earth. At higher landscape diversity, productivity was temporally more stable, and 20-year greening trends were accelerated. These effects occurred independent of local species diversity, suggesting emergent mechanisms at hitherto neglected levels of biological organization. Specifically, mechanisms related to interactions among land-cover types unfold at the scale of entire landscapes, similar to, but not necessarily resulting from, interactions between species within single ecosystems.
U2 - 10.1038/s43247-025-02000-1
DO - 10.1038/s43247-025-02000-1
M3 - Article
SN - 2662-4435
VL - 6
JO - Communications Earth & Environment
JF - Communications Earth & Environment
IS - 1
M1 - 28
ER -