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Pérez-Escobar, O., Zizka, A., Bermúdez, M. A., Meseguer, A. S., Condamine, F. L., Hoorn, C., Hooghiemstra, H., Pu, Y., Bogarin, D., Boschman, L. M., Pennington, R. T., Antonelli, A., & Chomicki, G. (2022). The Andes through time: evolution and distribution of Andean floras. Trends in Plant Science, 27(4), 364-378. https://doi.org/10.1016/j.tplants.2021.09.010 -
Kornder, N. A., Esser, Y., Stoupin, D., Leys, S. P., Mueller, B., Vermeij, M. J. A., Huisman, J., & de Goeij, J. M. (2022). Sponges sneeze mucus to shed particulate waste from their seawater inlet pores. Current Biology, 32(17), 3855-3861.e3. https://doi.org/10.1016/j.cub.2022.07.017 -
Lippert, F., Kranstauber, B., Forré, P. D., & van Loon, E. E. (2022). Learning to predict spatiotemporal movement dynamics from weather radar networks. Methods in Ecology and Evolution, 13(12), 2811-2826. https://doi.org/10.1111/2041-210X.14007 -
Campana, S., Riesgo, A., Jongepier, E., Fuss, J., Muyzer, G., & de Goeij, J. M. (2022). Meta-transcriptomic comparison of two sponge holobionts feeding on coral- and macroalgal-dissolved organic matter. BMC Genomics, 23, Article 674. https://doi.org/10.1186/s12864-022-08893-y -
Hannula, S. E., & Morriën, E. (2022). Will fungi solve the carbon dilemma? Geoderma, 413, Article 115767. https://doi.org/10.1016/j.geoderma.2022.115767 -
Quaresma, A., Zartman, C. E., Piedade, M. T. F., Wittmann, F., Jardim, M. A. G., Irume, M. V., Benavides, A. M., Freitas, L., Toledo, J. J., Boelter, C. R., Obermüller, F., Duque, A. J., Klein, V. P., Mari, M. L. G., Schöngart, J., Arenas, E., Pos, E. T., Vasco, A., Ek, R., ... ter Steege, H. (2022). The Amazon Epiphyte Network: A First Glimpse Into Continental-Scale Patterns of Amazonian Vascular Epiphyte Assemblages. Frontiers in Forests and Global Change, 5, Article 828759. https://doi.org/10.3389/ffgc.2022.828759 -
Sotillo, A., Baert, J. M., Müller, W., Stienen, E. W. M., Shamoun-Baranes, J., Soares, A. M. V. M., & Lens, L. (2022). Weather- and human-related shifts in feeding conditions promote the use of built-up areas by an avian opportunist. Landscape and Urban Planning, 217, Article 104268. https://doi.org/10.1016/j.landurbplan.2021.104268 -
Campo, J., Cammeraat, E. L. H., Gimeno-García, E., & Andreu, V. (2022). Soil and organic carbon redistribution in a recently burned Mediterranean hillslope affected by water erosion processes. Geoderma, 406, Article 115539. https://doi.org/10.1016/j.geoderma.2021.115539 -
Blankers, T., Fruitet, E., Burdfield Steel, E., & Groot, A. T. (2022). Experimental evolution of a pheromone signal. Ecology and Evolution, 12(5), Article e8941. https://doi.org/10.1002/ece3.8941 -
Salvatori, M., De Groeve, J., van Loon, E., De Baets, B., Morellet, N., Focardi, S., Bonnot, N. C., Gehr, B., Griggio, M., Heurich, M., Kroeschel, M., Licoppe, A., Moorcroft, P., Pedrotti, L., Signer, J., Van de Weghe, N., & Cagnacci, F. (2022). Day versus night use of forest by red and roe deer as determined by Corine Land Cover and Copernicus Tree Cover Density: Assessing use of geographic layers in movement ecology. Landscape Ecology, 37(5), 1453–1468. https://doi.org/10.1007/s10980-022-01416-w
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