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Urban intensity gradients shape community structure, life‐history traits and performance in a multitrophic system
Casanelles‐Abella, J., Pellissier, L., Aleixo, C., Orti, M. A., Chiron, F., Deguines, N., … Moretti, M. (2024). Urban intensity gradients shape community structure, life‐history traits and performance in a multitrophic system. Insect Conservation and Diversity, 17(2), 243-258. https://doi.org/10.1111/icad.12728
Transnational conservation to anticipate future plant shifts in Europe
Chauvier-Mendes, Y., Pollock, L. J., Verburg, P. H., Karger, D. N., Pellissier, L., Lavergne, S., … Thuiller, W. (2024). Transnational conservation to anticipate future plant shifts in Europe. Nature Ecology & Evolution. https://doi.org/10.1038/s41559-023-02287-3
Dead wood distributed in different‐sized habitat patches enhances diversity of saproxylic beetles in a landscape experiment
Haeler, E., Stillhard, J., Hindenlang Clerc, K., Pellissier, L., & Lachat, T. (2024). Dead wood distributed in different‐sized habitat patches enhances diversity of saproxylic beetles in a landscape experiment. Journal of Applied Ecology, 61(2), 316-327. https://doi.org/10.1111/1365-2664.14554
Novel community data in ecology-properties and prospects
Hartig, F., Abrego, N., Bush, A., Chase, J. M., Guillera-Arroita, G., Leibold, M. A., … Yu, D. W. (2024). Novel community data in ecology-properties and prospects. Trends in Ecology and Evolution, 39(3). https://doi.org/10.1016/j.tree.2023.09.017
Projection of current and future distribution of adaptive genetic units in an alpine ungulate
Hoste, A., Capblancq, T., Broquet, T., Denoyelle, L., Perrier, C., Buzan, E., … Yannic, G. (2024). Projection of current and future distribution of adaptive genetic units in an alpine ungulate. Heredity, 132, 54-66. https://doi.org/10.1038/s41437-023-00661-2
SWECO25: a cross-thematic raster database for ecological research in Switzerland
Külling, N., Adde, A., Fopp, F., Schweiger, A. K., Broennimann, O., Rey, P. L., … Guisan, A. (2024). SWECO25: a cross-thematic raster database for ecological research in Switzerland. Scientific Data, 11(1), 21 (7 pp.). https://doi.org/10.1038/s41597-023-02899-1
Escarpment evolution drives the diversification of the Madagascar flora
Liu, Y., Wang, Y., Willett, S. D., Zimmermann, N. E., & Pellissier, L. (2024). Escarpment evolution drives the diversification of the Madagascar flora. Science, 383(6683), 653-658. https://doi.org/10.1126/science.adi0833
Global multifaceted biodiversity patterns, centers, and conservation needs in angiosperms
Luo, A., Li, Y., Shrestha, N., Xu, X., Su, X., Li, Y., … Wang, Z. (2024). Global multifaceted biodiversity patterns, centers, and conservation needs in angiosperms. Science China Life Sciences. https://doi.org/10.1007/s11427-023-2430-2
Speed of thermal adaptation of terrestrial vegetation alters Earth's long-term climate
Rogger, J., Mills, B. J. W., Gerya, T. V., & Pellissier, L. (2024). Speed of thermal adaptation of terrestrial vegetation alters Earth's long-term climate. Science Advances, 10(9), eadj4408 (10 pp.). https://doi.org/10.1126/sciadv.adj4408
Plant functional composition as an effective surrogate for biodiversity conservation
Wan, J. Z., Pellissier, L., Wang, C. J., Yu, F. H., & Li, M. H. (2024). Plant functional composition as an effective surrogate for biodiversity conservation. Basic and Applied Ecology, 74, 49-56. https://doi.org/10.1016/j.baae.2023.11.005
Long-term wetland biomonitoring highlights the differential impact of land use on macroinvertebrate diversity in Dongting Lake in China
Zhang, Y., Huang, D., Jin, X., Li, L., Wang, C., Wang, Y., … Zhang, X. (2024). Long-term wetland biomonitoring highlights the differential impact of land use on macroinvertebrate diversity in Dongting Lake in China. Communications Earth & Environment, 5(1), 32 (11 pp.). https://doi.org/10.1038/s43247-024-01203-2
N-SDM: a high-performance computing pipeline for Nested Species Distribution Modelling
Adde, A., Rey, P. L., Brun, P., Külling, N., Fopp, F., Altermatt, F., … Guisan, A. (2023). N-SDM: a high-performance computing pipeline for Nested Species Distribution Modelling. Ecography, 2023(6), e06540 (11 pp.). https://doi.org/10.1111/ecog.06540
Too many candidates: embedded covariate selection procedure for species distribution modelling with the covsel R package
Adde, A., Rey, P. L., Fopp, F., Petitpierre, B., Schweiger, A. K., Broennimann, O., … Guisan, A. (2023). Too many candidates: embedded covariate selection procedure for species distribution modelling with the covsel R package. Ecological Informatics, 75, 102080 (8 pp.). https://doi.org/10.1016/j.ecoinf.2023.102080
Quantifying biodiversity using eDNA from water bodies: general principles and recommendations for sampling designs
Altermatt, F., Carraro, L., Antonetti, M., Albouy, C., Zhang, Y., Lyet, A., … Pellissier, L. (2023). Quantifying biodiversity using eDNA from water bodies: general principles and recommendations for sampling designs. Environmental DNA, 5(4), 671-682. https://doi.org/10.1002/edn3.430
Co-occurrences and species distribution models show the structuring role of dominant species in the Vez watershed, in Portugal
Alves, C., Marcos, B., Gonçalves, J., Verburg, P., Pellissier, L., & Lomba, A. (2023). Co-occurrences and species distribution models show the structuring role of dominant species in the Vez watershed, in Portugal. Ecological Indicators, 151, 110306 (10 pp.). https://doi.org/10.1016/j.ecolind.2023.110306
Drone-assisted collection of environmental DNA from tree branches for biodiversity monitoring
Aucone, E., Kirchgeorg, S., Valentini, A., Pellissier, L., Deiner, K., & Mintchev, S. (2023). Drone-assisted collection of environmental DNA from tree branches for biodiversity monitoring. Science Robotics, 8(74), eadd5762 (13 pp.). https://doi.org/10.1126/scirobotics.add5762
Freshwater fish diversity in the western Amazon basin shaped by Andean uplift since the Late Cretaceous
Boschman, L. M., Carraro, L., Cassemiro, F. A. S., de Vries, J., Altermatt, F., Hagen, O., … Pellissier, L. (2023). Freshwater fish diversity in the western Amazon basin shaped by Andean uplift since the Late Cretaceous. Nature Ecology & Evolution, 7, 2037-2044. https://doi.org/10.1038/s41559-023-02220-8
Deep learning approximations for non-local nonlinear PDEs with Neumann boundary conditions
Boussange, V., Becker, S., Jentzen, A., Kuckuck, B., & Pellissier, L. (2023). Deep learning approximations for non-local nonlinear PDEs with Neumann boundary conditions. Partial Differential Equations Applications, 4(6), 51 (51 pp.). https://doi.org/10.1007/s42985-023-00244-0
Phytodiversity is associated with habitat heterogeneity from Eurasia to the Hengduan Mountains
Chang, Y., Gelwick, K., Willett, S. D., Shen, X., Albouy, C., Luo, A., … Pellissier, L. (2023). Phytodiversity is associated with habitat heterogeneity from Eurasia to the Hengduan Mountains. New Phytologist, 240(4), 1647-1658. https://doi.org/10.1111/nph.19206
The geography of climate and the global patterns of species diversity
Coelho, M. T. P., Barreto, E., Rangel, T. F., Diniz-Filho, J. A. F., Wüest, R. O., Bach, W., … Graham, C. H. (2023). The geography of climate and the global patterns of species diversity. Nature, 622, 537-544. https://doi.org/10.1038/s41586-023-06577-5
 

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