New publication in Hydrological Processes.
Maruyama T, Fujii S Accuracy evaluation of evapotranspiration estimated by inverse analysis using FLUXNET2015 at forest sites. Hydrological Processes, 2022 36(12), e14762. https://doi.org/10.1002/hyp.14762.
Maruyama T, Fujii S Accuracy evaluation of evapotranspiration estimated by inverse analysis using FLUXNET2015 at forest sites. Hydrological Processes, 2022 36(12), e14762. https://doi.org/10.1002/hyp.14762.
Ruffault J, Limousin JM, Pimont F. et al. (2022) Plant hydraulic modelling of leaf and canopy fuel moisture content reveals increasing vulnerability of a Mediterranean forest to wildfires under extreme drought. New Phytologist. doi : 10.1111/nph.18614. https://www.inrae.fr/actualites/estimer-dessechement-forets-mieux-predire-risque-incendie https://www.inrae.fr/en/news/estimating-forest-desiccation-better-predict-fire-danger
Staudt, M., Daussy, J., Ingabire, J., and Dehimeche, N. : Growth and actual leaf temperature modulate CO2 responsiveness of monoterpene emissions from holm oak in opposite ways, Biogeosciences, 19, 4945–4963, https://doi.org/10.5194/bg-19-4945-2022, 2022.
14 students of the Master 1 Ecosystèmes from the University of Montpellier visited the experimental site for a practical course with the Profs. T. Decaens and F. Richard.
Quer E., Pereira S., Michel,T., Santonja M., Gauquelin T., Simioni G., Ourcival J.-M., Joffre R., Limousin J.-M., Aupic-Samain A. et al. (2022) Amplified Drought Alters Leaf Litter Metabolome, Slows down Litter Decomposition, and Modifies Home Field (Dis)Advantage in Three Mediterranean Forests. Plants 11, 2582.
Santonja M, Pereira S, Gauquelin T, Quer E, Simioni G, Limousin JM, Ourcival JM, Reiter IM, Fernandez C and Baldy V (2022) Experimental Precipitation Reduction Slows Down LitterDecomposition but Exhibits Weak to No Effect on Soil Organic Carbon and Nitrogen Stocks in Three Mediterranean Forests of Southern France. Forests 13, 1485. https://doi.org/10.3390/f13091485
Forrester DL, Limousin JM and Pfautsch S. (2022) The relationship between tree size and tree water-use : is competition for water size-symmetric or size-asymmetric ? Tree Physiology. https://doi.org/10.1093/treephys/tpac018
Wang YR, Buchmann N, Hessen DO, Stordal F, Erisman JW, Vollsnes AV, Andersen T, Dolman H (2022) Disentangling effects of natural and anthropogenic drivers on forest net ecosystem production. Sc. Total Environment https://doi.org/10.1016/j.scitotenv.2022.156326.
Limousin, JM, Roussel A, Rodríguez‐Calcerrada J, Torres‐Ruiz JM, Moreno M, Jalon LG et al. (2022) Drought acclimation of Quercus ilex leaves improves tolerance to moderate drought but not resistance to severe water stress. Plant, Cell & Environment, 1–18.https://doi.org/10.1111/pce.14326
Qiu, T., Andrus, R., Aravena, MC. et al. Limits to reproduction and seed size-number trade-offs that shape forest dominance and future recovery. Nat Commun 13, 2381 (2022). https://doi.org/10.{1038/s41467-022-30037-9}