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Arias‐Real R., Delgado‐Baquerizo M., Sabater S., Gutiérrez‐Cánovas C., Valencia E., Aragón G., Cantón Y., Datry T., Giordani P., Medina N.G., de los Ríos A., Romaní A.M., Weber B. & Hurtado P. 2024. Unfolding the dynamics of ecosystems undergoing alternating wet‐dry transitional states. Ecology Letters 27: e14488. https://doi.org/10.1111/ele.14488
Ceballos-Escalera A., Pous N., Bañeras L., Balaguer M.D., & Puig S. 2024. Advancing towards electro-bioremediation scaling-up: On-site pilot plant for successful nitrate-contaminated groundwater treatment. Water Research 256: 121618. https://doi.org/10.1016/j.watres.2024.121618
Cano-Barbacil C., Olden J.D. & García-Berthou E. 2024. Myers’ divisions revisited: Contemporary evidence for distinct trait differences among global inland fishes. Fish and Fisheries 25: 672-685. https://doi.org/10.1111/faf.12832
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Thuile Bistarelli L., Fuß T., Walther F., Zoccarato L., Talluto L., Romaní A.M., Grossart H.-P. & Singer G.A. 2024. Strong large‐scale structure–function coupling in benthic bacteria is mediated by algae in a geodiverse river network. Limnology and Oceanography 69: 2624-2638. https://doi.org/10.1002/lno.12690
Cano-Barbacil C., Radinger J., Olden J.D. & García-Berthou E. 2023. Estimates of niche position and breadth vary across spatial scales for native and alien inland fishes. Global Ecology and Biogeography 32: 466–477. https://doi.org/10.1111/geb.13630
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Cano-Barbacil C., Radinger J., Grenouillet G. & García-Berthou E. 2022. Phylogenetic signal and evolutionary relationships among traits of inland fishes along elevational and longitudinal gradients. Freshwater Biology 67: 912–925. https://doi.org/10.1111/fwb.13890
Cano-Barbacil C., Radinger J. & García-Berthou E. 2022. The importance of seawater tolerance and native status in mediating the distribution of inland fishes. Journal of Biogeography 49: 2037–2049. [.HTML] [Data & scripts (figshare)]
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Rubio-Gracia, F., Argudo, M., Zamora, L., Clements, W. H., Vila-Gispert, A., Casals, F., & Guasch, H. 2022. Response of stream ecosystem structure to heavy metal pollution: context-dependency of top-down control by fish. Aquatic Sciences, 84: 17. https://doi.org/10.1007/s00027-022-00849-4
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Sala M.M., Piontek J., Endres S., Romaní A.M., Dyhrman S., Steen A.D. (eds). 2019. Extracellular Enzymes in Aquatic Environments: Exploring the Link Between Genomic Potential and Biogeochemical Consequences. Lausanne: Frontiers Media. https://www.frontiersin.org/research-topics/4814
Perujo N., Romaní A.M. & Sanchez-Vila X. 2018. Bilayer infiltration system combines benefits from both coarse and fine sands promoting nutrient accumulation in sediments and increasing removal rates. Environmental Science & Technology 52: 5734–5743. https://doi.org/10.1021/acs.est.8b00771
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Freixa A., Acuña V., Casellas M., Pecheva S., Romaní A.M. 2017. Warmer night-time temperature promotes microbial heterotrophic activity and modifies stream sediment community. Global Change Biology 23: 3825–3837. https://doi.org/10.1111/gcb.13664
McKnight E., García-Berthou E., Srean P. & Rius M. 2017. Global meta-analysis of native and non-indigenous trophic traits in aquatic ecosystems. Global Change Biology 23: 1861–1870. https://doi.org/10.1111/gcb.13524
Perujo N., Sanchez-Vila X., Proia L. & Romaní A.M. 2017. Interaction between physical heterogeneity and microbial processes in subsurface sediments: a laboratory-scale column experiment. Environmental Science and Technology 51: 6110–6119. https://doi.org/10.1021/acs.est.6b06506
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Battin T.J., Besemer K., Bengtsson M.M., Romaní A.M., Packmann A.I. 2016. The ecology and biogeochemistry of stream biofilms. Nature Reviews Microbiology 14: 251–263. https://doi.org/10.1038/nrmicro.2016.15
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