Publicaciones

Reiniciar
DetailsTítuloDOIAutoresFechaTipoMedio
The current situation and future perspectives of Quercus ilex and Pinus halepensis afforestation on agricultural land in Spain under climate change scenarioshttps://doi.org/10.1007/s11056-020-09788-0Quinto L., Navarro-Cerrillo R.M., Palacios-Rodriguez G., Ruiz-Gómez F., Duque-Lazo J.Ene 2021ArticleNew Forests
Theory and tests for coordination among hydraulic and photosynthetic traits in co-occurring woody specieshttps://doi.org/10.1111/nph.19987Chhajed S.S., Wright I.J., Perez-Priego O.Dic 2024ArticleNew Phytologist
Maximum entropy networks show that plant–arbuscular mycorrhizal fungi associations are anti-nested and modularhttps://doi.org/10.1111/nph.70694Ajaz S., Amin N., López-García Á., Birt H., Pajares-Murgó M., Lanfranco L., Garrido J.L., Alcántara J.M., Rillig M.C., Johnson D., Caruso T.Ene 2026ArticleNew Phytologist
Plant species abundance and phylogeny explain the structure of recruitment networkshttps://doi.org/10.1111/nph.15774Alcántara J.M., Garrido J.L., Rey P.J.Jul 2019ArticleNew Phytologist
Lower relative abundance of ectomycorrhizal fungi under a warmer and drier climate is linked to enhanced soil organic matter decompositionhttps://doi.org/10.1111/nph.17661Querejeta J.I., Schlaeppi K., López-García Á., Ondoño S., Prieto I., van der Heijden M.G.A., del Mar Alguacil M.Nov 2021ArticleNew Phytologist
Corrigendum to: Lower relative abundance of ectomycorrhizal fungi under a warmer and drier climate is linked to enhanced soil organic matter decomposition (New Phytologist, (2021), 232, 3, (1399-1413), 10.1111/nph.17661)https://doi.org/10.1111/nph.17986Querejeta J.I., Schlaeppi K., López-García Á., Ondoño S., Prieto I., León-Sánchez L., van der Heijden M.G.A., Alguacil M.d.M.May 2022ErratumNew Phytologist
Germination dynamics of Nothofagus glauca seeds: provenance-specific responses to temperature variationhttps://doi.org/10.33494/nzjfs552025x386xSantelices-Moya R., Cabrera-Ariza A.M., Bobadilla-Bustos C., Aguilera-Peralta M., Ramos P., Navarro-Cerrillo R.M.Ene 2025ArticleNew Zealand Journal of Forestry Science
Source apportionment of PM10 based on offline chemical speciation data at 24 European siteshttps://doi.org/10.1038/s41612-025-01097-7Liu X., Zhang X., Jin B., Wang T., Qian S., Zou J., Dinh V.N.T., Jaffrezo J.L., Uzu G., Dominutti P., Darfeuil S., Favez O., Conil S., Marchand N., Castillo S., de la Rosa J.D., Grange S., Hueglin C., Eleftheriadis K., Diapouli E., Manousakas M.I., Gini M., Nava S., Calzolai G., Alves C., Monge M., Reche C., Harrison R.M., Hopke P.K., Alastuey A., Querol X.Dic 2025ArticleNpj Climate and Atmospheric Science
Tide propagation and salinity distribution response to changes in water depth and channel network in the Guadalquivir River Estuary: An exploratory model approachhttps://doi.org/10.1016/j.ocecoaman.2019.03.015Siles-Ajamil R., Díez-Minguito M., Losada M.May 2019ArticleOcean and Coastal Management
Experimental study on the hydraulic performance and stability of a homogeneous overtopped rubble mound breakwaterhttps://doi.org/10.1016/j.oceaneng.2025.122116Marino S., Santamaría M., Clavero M.Nov 2025ArticleOcean Engineering