Ver ítem
- xmlui.general.dspace_homeCentros Regionales y EEAsCentro Regional Patagonia SurEEA Santa CruzArtículos científicosxmlui.ArtifactBrowser.ItemViewer.trail
- Inicio
- Centros Regionales y EEAs
- Centro Regional Patagonia Sur
- EEA Santa Cruz
- Artículos científicos
- Ver ítem
Aridity modulates grassland biomass responses to combined drought and nutrient addition
Resumen
Plant biomass tends to increase under nutrient addition and decrease under drought. Biotic and abiotic factors influence responses to both, making the combined impact of nutrient addition and drought difficult to predict. Using a globally distributed network of manipulative field experiments, we assessed grassland aboveground biomass response to both drought and increased nutrient availability at 26 sites across nine countries. Overall, drought reduced
[ver mas...]
Plant biomass tends to increase under nutrient addition and decrease under drought. Biotic and abiotic factors influence responses to both, making the combined impact of nutrient addition and drought difficult to predict. Using a globally distributed network of manipulative field experiments, we assessed grassland aboveground biomass response to both drought and increased nutrient availability at 26 sites across nine countries. Overall, drought reduced biomass by 19% and nutrient addition increased it by 24%, resulting in no net impact under combined drought and nutrient addition. Among the plant functional groups, only graminoids
responded positively to nutrients during drought. However, these general responses depended on local conditions, especially aridity. Nutrient effects were stronger in arid grasslands and weaker in humid regions and nitrogen-rich soils, although nutrient addition alleviated drought effects the most in subhumid sites. Biomass responses were weaker with higher precipitation variability. Biomass increased more with increased nutrient availability and declined more with drought at high-diversity sites than at low-diversity sites. Our findings highlight the importance of local abiotic and biotic conditions in predicting grassland responses to anthropogenic
nutrient and climate changes.
[Cerrar]

Autor
Bondaruk, Viviana F.;
Xu, C.;
Wilfahrt, Peter A.;
Yahdjian, Laura;
Yu, Q.;
Borer, Elizabeth T.;
Jentsch, Anke;
Seabloom, Eric William;
Smith, Melinda D.;
Alberti, Juan;
Peri, Pablo Luis;
Hautier, Yann;
Fuente
Nature Ecology and Evolution 9 : 937-946. (May 2025)
Fecha
2025-05-19
Editorial
Springer Nature
ISSN
2397-334X (online)
Formato
pdf
Tipo de documento
artículo
Palabras Claves
Derechos de acceso
Restringido
