Nair, R.; Luo, Y.; El-Madany, T. S.; Rolo, V.; Pacheco-Labrador, J.; Caldararu, S.; Morris, K. A.; Schrumpf, M.; Carrara, A.; Moreno, G.et al.; Reichstein, M.; Migliavacca, M.: Nitrogen availability and summer drought, but not N:P imbalance, drive carbon use efficiency of a Mediterranean tree-grass ecosystem. Global Change Biology 30 (9), e17486 (2024)
Caldararu, S.; Rolo, V.; Stocker, B. D.; Gimeno, T. E.; Nair, R.: Ideas and perspectives: Beyond model evaluation – combining experiments and models to advance terrestrial ecosystem science. Biogeosciences 20 (17), pp. 3637 - 3649 (2023)
Nair, R.; Strube, M.; Hertel, M.; Kolle, O.; Rolo, V.; Migliavacca, M.: High frequency root dynamics: sampling and interpretation using replicated robotic minirhizotrons. Journal of Experimental Botany 74 (3), pp. 769 - 785 (2023)
Dursow, A.; Morris, K. A.; Nair, R.: Direct observation of subterranean refugium use by Epidalea calamita (Natterjack Toad) in a dehesa ecosystem in Extremadura, Spain. Herpetology Notes 14, pp. 1203 - 1205 (2021)
Nair, R. K. F.; Morris, K. A.; Migliavacca, M.; Moreno, G.; Schrumpf, M.: Plant‐available N:P alters root litter N recycling in a Mediterranean tree–grass ecosystem. Journal of Plant Nutrition and Soil Science 183 (4), pp. 517 - 529 (2020)
Luo, Y.; El-Madany, T. S.; Ma, X.; Nair, R. K. F.; Jung, M.; Weber, U.; Filippa, G.; Bucher, S. F.; Moreno, G.; Cremonese, E.et al.; Carrara, A.; Gonzalez‐Cascon, R.; Escudero, Y. C.; Galvagno, M.; Pacheco-Labrador, J.; Martín, M. P.; Perez‐Priego, O.; Reichstein, M.; Richardson, A. D.; Menzel, A.; Römermann, C.; Migliavacca, M.: Nutrients and water availability constrain the seasonality of vegetation activity in a Mediterranean ecosystem. Global Change Biology 26 (8), pp. 4379 - 4400 (2020)
Nair, R. K. F.; Perks, M. P.; Mencuccini, M.: Decomposition nitrogen is better retained than simulated deposition from mineral amendments in a temperate forest. Global Change Biology 23 (4), pp. 1711 - 1724 (2017)
The BIOMASS satellite was successfully launched into orbit on 29 April 2025. The BIOMASS mission is designed to map and monitor global forests. It will map the structure of different forest types and provide data on above-ground biomass.
More frequent strong storms are destroying ever larger areas of the Amazon rainforest. Storm damage was mapped between 1985 and 2020. The total area of affected forests roughly quadrupled in the period studied.
Recently, representatives of the Brazilian Ministry of Research and foreign ambassadors visited the German-Brazilian research station ATTO. On site, Research Minister Pontes promised multi-million investments in Amazon research and also in ATTO. This is intended to further expand the infrastructure and strengthen research in Brazil.
For the German-Brazilian joint project ATTO (Amazon Tall Tower Observatory), the Max Planck Society on the German side will continue to ensure the continued operation of the research station in the Brazilian rainforest and research. In addition, the German Federal Ministry of Education and Research (BMBF) will fund the project with ATTO+ for another three years with around 5 million euros.