Can trees buffer the impact of climate change on pasture production and digestibility of Mediterranean dehesas? - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Science of the Total Environment Année : 2022

Can trees buffer the impact of climate change on pasture production and digestibility of Mediterranean dehesas?

Résumé

Highlights: • Habitat type had a significant influence on biomass productivity and digestibility. • Experimental warming increased by 33% biomass productivity, but reduced its quality. • Reduced rainfall decreased by 13% biomass productivity. • Changes in plant functional composition affected productivity and digestibility. • Tree canopy played a buffering role in mitigating the impact of climate change. Abstract: Sustainability and functioning of silvopastoral ecosystems are being threatened by the forecasted warmer and drier environments in the Mediterranean region. Scattered trees of these ecosystems could potentially mitigate the impact of climate change on herbaceous plant community but this issue has not yet tested experimentally. We carried out a field manipulative experiment of increased temperature (+2-3 ?) using Open Top Chambers and rainfall reduction (30%) through rain-exclusion shelters to evaluate how net primary productivity and digestibility respond to climate change over three consecutive years, and to test whether scattered trees could buffer the effects of higher aridity in Mediterranean dehesas. First, we observed that herbaceous communities located beneath tree canopy were less productive (351 g/m(2)) than in open grassland (493 g/m2) but had a higher digestibility (44% and 41%, respectively), likely promoted by tree shade and the higher soil fertility of this habitat. Second, both habitats responded similarly to climate change in terms of net primary productivity, with a 33% increase under warming and a 13% decrease under reduced rainfall. In contrast, biomass digestibility decreased under increased temperatures (-7.5%), since warming enhanced the fiber and lignin content and decreased the crude protein content of aerial biomass. This warming-induced effect on biomass digestibility only occurred in open grasslands, suggesting a buffering role of trees in mitigating the impact of climate change. Third, warming did not only affect these ecosystem processes in a direct way but also indirectly via changes in plant functional composition. Our findings suggest that climate change will alter both the quantity and quality of pasture production, with expected warmer conditions increasing net primary productivity but at the expense of reducing digestibility. This negative effect of warming on digestibility might be mitigated by scattered trees, highlighting the importance of implementing strategies and suitable management to control tree density in these ecosystems.
Fichier principal
Vignette du fichier
1-s2.0-S0048969722026316-main.pdf (3.07 Mo) Télécharger le fichier
Origine : Publication financée par une institution
Licence : CC BY NC ND - Paternité - Pas d'utilisation commerciale - Pas de modification

Dates et versions

hal-03765768 , version 1 (10-03-2023)

Licence

Paternité - Pas d'utilisation commerciale - Pas de modification

Identifiants

Citer

Maria Dolores Hidalgo-Galvez, Karim Barkaoui, Florence Volaire, Luis Matías, Jesús Cambrollé, et al.. Can trees buffer the impact of climate change on pasture production and digestibility of Mediterranean dehesas?. Science of the Total Environment, 2022, 835, pp.155535. ⟨10.1016/j.scitotenv.2022.155535⟩. ⟨hal-03765768⟩
42 Consultations
21 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More