Abstract
Humans are driving unprecedented environmental change, causing the loss of species from local ecosystems. This local species loss is likely to result in declines in ecosystem functioning but understanding why these so-called biodiversity-ecosystem functioning relationships vary is crucial for conservation and sustainable land management. Previous studies have shown that variation among biodiversity-ecosystem functioning (BEF) relationships can be explained by a 'function-dominance correlation', i.e. the correlation of species' biomass in monoculture ('functioning') versus mixtures ('dominance'). One potential reason for the importance of the function-dominance correlation is its relationship to underlying plant traits. Here, we explore which traits control species' biomass in monoculture and mixture and thereby drive the function-dominance correlation, and hence BEF relationships. To do this, we perform a modeling experiment with six trait-based models of plant community dynamics and classify model traits as either 'size' or 'resource' traits. This approach allows us to better