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Climatic conditions, not above- and belowground resource availability and uptake capacity, mediate tree diversity effects on productivity and stability

Tree species diversity promotes multiple ecosystem functions and services. However, little is known about how above- and belowground resource availability (light, nutrients, and water) and resource uptake capacity mediate tree species diversity effects on aboveground wood productivity and temporal stability of productivity in European forests and whether the effects differ between humid and arid regions. We used the data from six major European forest types along a latitudinal gradient to address those two questions. We found that neither leaf area index (a proxy for light uptake capacity), nor fine root biomass (a proxy for soil nutrient and water uptake capacity) was related to tree species richness. Leaf area index did, however, enhance productivity, but negatively affected stability. Productivity was further promoted by soil nutrient availability, while stability was enhanced by fine root biomass. We only found a positive effect of tree species richness on productivity in arid regions and a positive effect on stability in humid regions. This indicates a possible disconnection between productivity and stability regarding tree species richness effects. In other words, the mechanisms that drive the positive effects of tree species richness on productivity do not per se benefit stability simultaneously. Our findings therefore suggest that tree species richness effects are largely mediated by differences in climatic conditions rather than by differences in above- and belowground resource availability and uptake capacity at the regional scales.
- Laboratoire Parole et Langage France
- Leipzig University Germany
- University of Bristol United Kingdom
- KU Leuven Belgium
- Ghent University Belgium
Abiotic context, Aboveground wood productivity, Stability, FunDivEUROPE, Resource availability, Resource uptake capacity, [SDE] Environmental Sciences, 570, Resource uptake capacity, INCREASES, Aboveground wood productivity, Abiotic context, INDICATOR VALUES, Forests, Resource availability, Trees, Soil, FOREST ECOSYSTEMS, RICHNESS, Biomass, Ecosystem, 580, FINE-ROOT BIOMASS, LEAF-AREA INDEX, SPECIES-DIVERSITY, FunDivEUROPE, Biodiversity, Earth and Environmental Sciences, [SDE]Environmental Sciences, IMPORTANT DRIVER, BIODIVERSITY, Stability, RESISTANCE
Abiotic context, Aboveground wood productivity, Stability, FunDivEUROPE, Resource availability, Resource uptake capacity, [SDE] Environmental Sciences, 570, Resource uptake capacity, INCREASES, Aboveground wood productivity, Abiotic context, INDICATOR VALUES, Forests, Resource availability, Trees, Soil, FOREST ECOSYSTEMS, RICHNESS, Biomass, Ecosystem, 580, FINE-ROOT BIOMASS, LEAF-AREA INDEX, SPECIES-DIVERSITY, FunDivEUROPE, Biodiversity, Earth and Environmental Sciences, [SDE]Environmental Sciences, IMPORTANT DRIVER, BIODIVERSITY, Stability, RESISTANCE
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).10 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 10% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Average impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Top 10%
