Management, Monitoring, Policy and Law; Water Science and Technology; Aquatic Science; Ecology
Abstract :
[en] Riparian zones are the paragon of transitional ecosystems, providing critical habitat and ecosystem services that are especially threatened by global change. Following consultation with experts, 10 key challenges were identified to be addressed for riparian vegetation science and management improvement: (1) Create a distinct scientific community by establishing stronger bridges between disciplines; (2) Make riparian vegetation more visible and appreciated in society and policies; (3) Improve knowledge regarding biodiversity—ecosystem functioning links; (4) Manage spatial scale and context-based issues; (5) Improve knowledge on social dimensions of riparian vegetation; (6) Anticipate responses to emergent issues and future trajectories; (7) Enhance tools to quantify and prioritize ecosystem services; (8) Improve numerical modeling and simulation tools; (9) Calibrate methods and increase data availability for better indicators and monitoring practices and transferability; and (10) Undertake scientific validation of best management practices. These challenges are discussed and critiqued here, to guide future research into riparian vegetation.
Disciplines :
Environmental sciences & ecology
Author, co-author :
Rodríguez‐González, Patricia M. ; Centro de Estudos Florestais Instituto Superior de Agronomia, Universidade de Lisboa Lisboa Portugal ; Laboratório Associado Terra Lisboa Portugal
Abraham, Eleni; School of Agriculture, Forestry and Natural Environment Aristotle University of Thessaloniki Thessaloniki Greece
Aguiar, Francisca; Centro de Estudos Florestais Instituto Superior de Agronomia, Universidade de Lisboa Lisboa Portugal ; Laboratório Associado Terra Lisboa Portugal
Andreoli, Andrea; Faculty of Science and Technology Free University of Bozen‐Bolzano Bolzano Italy
Baležentienė, Ligita; Institute of Environment and Ecology, Vytautas Magnus University Kaunas Lithuania
Berisha, Naim ; Department of Biology, Faculty of Mathematics and Natural Sciences University of Prishtina Prishtina Kosovo
Bernez, Ivan; Institut Agro, Agrocampus Ouest Rennes France
Bruen, Michael; UCD Earth Institute & UCD Dooge Centre for Water Resources Research, University College Dublin Dublin Ireland
Bruno, Daniel; Instituto Pirenaico de Ecología (IPE) CSIC Zaragoza Spain
Camporeale, Carlo; Politecnico di Torino, Department of Environmental, Land and Infrastructure Engineering (DIATI) Torino Italy
Čarni, Andraž; Research Centre of the Slovenian Academy of Sciences and Arts Institute of Biology, University of Nova Gorica Ljubljana Slovenia
Chilikova‐Lubomirova, Mila; Bulgarian Academy of Sciences Institute of Mechanics Sofia Bulgaria
Corenblit, Dov; Universite Clermont Auvergne Clermont‐Ferrand France
Ćušterevska, Renata; Faculty of Natural Sciences and Mathematics Institute of Biology, Ss Cyril and Methodius University in Skopje Skopje North Macedonia
Doody, Tanya; CSIRO Adelaide South Australia Australia
England, Judy; Environment Agency Bristol UK
Evette, André; INRAE, UR LESSEM Grenoble France
Francis, Robert; King's College London UK
Garófano‐Gómez, Virginia ; Institut d'Investigació per a la Gestió Integrada de Zones Costaneres, Universitat Politècnica de València Grao de Gandia Spain ; GEOLAB Clermont Auvergne University Clermont‐Ferrand France
González del Tánago, Marta; Laboratorio de Hidrobiología Universidad Politecnica de Madrid Madrid Spain
Gultekin, Yasar Selman ; Forest Economics Department Düzce University Düzce Turkey
Guyard, Florian; Geography and Spatial Planning, Université Rennes 2 Rennes France
Hellsten, Seppo; Finnish Environment Institute (SYKE) Freshwater Centre University of Oulu Helsinki Finland
Hinkov, Georgi; Forest Research Institute Bulgarian Academy of Sciences Sofia Bulgaria
Jakubínský, Jiří ; Global Change Research Institute CAS Brno Czech Republic
Janssen, Philippe; INRAE Grenoble France
Jansson, Roland; Department of Ecology and Environmental Science Umeå University Umea Sweden
Kail, Jochem; University of Duisburg‐Essen Essen Germany
Keles, Emine ; Faculty of Architecture, Department of Landscape Architecture Trakya University Edirne Turkey
Kelly‐Quinn, Mary; School of Biology & Environmental Science and UCD Earth Institute, University College Dublin Dublin Ireland
Kidová, Anna ; Slovak Academy of Sciences, Institute of Geography Bratislava Slovakia
Kiss, Tímea; Department of Geoinformatics, Physical and Environmental Geography University of Szeged Szeged Hungary
Kulvik, Mart; Estonian University of Life Sciences Tartu Estonia
La Porta, Nicola; Fondazione Edmund Mach Centro Ricerca e Innovazione San Michelle All'Adige Italy ; European Forest Institute San Michelle All'Adige Italy
Laslier, Marianne; Ecologie et Dynamique des Systèmes Anthropisés Université de Picardie Jules Verne Amiens France
Latella, Melissa ; Politecnico di Torino, Department of Environmental, Land and Infrastructure Engineering (DIATI) Torino Italy
Lorenz, Stefan; Julius Kuehn Institute, Institute for Ecological Chemistry, Plant Analysis and Stored Product Protection Berlin Germany
Mandžukovski, Dejan; Department for Forest Management Planning Public Enterprise “Nacionalni šumi” Skopje North Macedonia
Manolaki, Paraskevi; Open University of Cyprus Faculty of Pure and Applied Sciences Latsia Cyprus
Martinez‐Fernández, Vanesa; Museo Nacional de Ciencias Naturales, CSIC Madrid Spain
Merritt, David; National Stream and Aquatic Ecology Center, Biological and Physical Resources Staff USDA Fort Collins Colorado USA
Michez, Adrien ; Université de Liège - ULiège > Département GxABT > Gestion des ressources forestières et des milieux naturels
Milovanović, Jelena; Environment and Sustainable Development Singidunum University Belgrade Serbia
Okruszko, Tomasz ; Warsaw University of Life Sciences, Institute of Environmental Engineering Warszawa Poland
Papastergiadou, Eva; Department of Biology University of Patras Patra Greece
Penning, Ellis; Department of Inland Water Systems Deltares Delft The Netherlands
Pielech, Remigiusz; Department of Forest Biodiversity, Faculty of Forestry University of Agriculture in Kraków Kraków Poland
Politti, Emilio; Department of Civil, Environmental and Mechanical Engineering University of Trento Trento Italy
Portela, Ana; Departamento de Biologia, Faculdade de Ciências Universidade do Porto Porto Portugal ; CIBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos InBIO, Laboratório Associado Vairão Portugal ; BIOPOLIS Program in Genomics, Biodiversity and Land Planning CIBIO Vairão Portugal
Riis, Tenna; Aarhus Universitet Department of Biology Aarhu Denmark
Škvorc, Željko; Faculty of Forestry and Wood Technology University of Zagreb Zagreb Croatia
Slezák, Michal; Institute of Forest Ecology Slovak Academy of Sciences Bratislava Slovakia
Stammel, Barbara ; Floodplain Institute, Catholic University of Eichstätt‐Ingolstadt Neuburg/Donau Germany
Stella, John; Department of Sustainable Resources Management SUNY College of Environmental Science and Forestry Syracuse New York USA
Stesevic, Danijela; Faculty of Natural Sciences and Mathematics University of Montenegro Podgorica Montenegro
Stupar, Vladimir; Faculty of Forestry, Department of Forest Ecology University of Banja Luka Banja Luka Bosnia and Herzegovina
Tammeorg, Olga ; Estonian University of Life Sciences Tartu Estonia
Tammeorg, Priit; Department of Agricultural Sciences University of Helsinki Helsinki Finland
Fosholt, Therese Moe; Norwegian Institute for Water Research Oslo Norway
Urbanič, Gorazd; Institute for Holistic Environmental Management, URBANZERO Mirna Slovenia
Villar, Marc; INRAE, ONF, BioForA Orleans France
Vogiatzakis, Ioannis; Open University of Cyprus Latsia Cyprus
Vrchovsky, Paul; Geography and Spatial Planning, Université Rennes 2 Rennes France
Yousefpour, Rasoul; Institute of Forestry and Conservation, John H. Daniels Faculty of Architecture, Landscape, and Design University of Toronto Toronto Canada ; Chair of Forestry Economics and Forest Planning University of Freiburg Freiburg Germany
Zinke, Peggy; Trondheim Sciencemonastery AS Norway
Zlatanov, Tzvetan; Bulgarian Academy of Sciences Institute of Biodiversity and Ecosystem Research Sofia Bulgaria
Dufour, Simon ; Geography and Spatial Planning, Université Rennes 2 Rennes France ; CNRS UMR LETG Rennes France
Aguiar, F. C., Segurado, P., Martins, M. J., Bejarano, M. D., Nilsson, C., Portela, M. M., & Merritt, D. M. (2018). The abundance and distribution of guilds of riparian woody plants change in response to land use and flow regulation. Journal of Applied Ecology, 55(5), 2227–2240. https://doi.org/10.1111/1365-2664.13110
Allen, W. (2003). Plant blindness. Bioscience, 53(10), 926. https://doi.org/10.1641/0006-3568(2003)053[0926:PB]2.0.CO;2
Arnold, J. S., Koro-Ljungberg, M., & Bartels, W. L. (2012). Power and conflict in adaptive management: Analyzing the discourse of riparian management on public lands. Ecology and Society, 17(1), 12. https://doi.org/10.5751/ES-04636-170119
Belletti, B., de Leaniz, C. G., Jones, J., Bizzi, S., Börger, L., Segura, G., Castelletti, A., van de Bund, W., Aarestrup, K., Barry, J., Belka, K., Berkhuysen, A., Birnie-Gauvin, K., Bussettini, M., Carolli, M., Consuegra, S., Dopico, E., Feierfeil, T., Fernández, S., … Zalewski, M. (2020). More than one million barriers fragment Europe's rivers. Nature, 588(7838), 436–441. https://doi.org/10.1038/s41586-020-3005-2
Bendix, J., & Stella, J. C. (2013). Riparian vegetation and the fluvial environment: A biogeographic perspective. In Treatise on geomorphology (pp. 53–74). Elsevier. https://doi.org/10.1016/B978-0-12-374739-6.00322-5
Bjelke, U., Boberg, J., Oliva, J., Tattersdill, K., & McKie, B. G. (2016). Dieback of riparian alder caused by the Phytophthora alni complex: projected consequences for stream ecosystems. Freshwater Biology, 61(5), 565–579. https://doi.org/10.1111/fwb.12729
Bornette, G., Tabacchi, E., Hupp, C., Puijalon, S., & Rostan, J. C. (2008). A model of plant strategies in fluvial hydrosystems. Freshwater Biology, 53(8), 1692–1705. https://doi.org/10.1111/j.1365-2427.2008.01994.x
Camporeale, C., Perucca, E., Ridolfi, L., & Gurnell, A. M. (2013). Modeling the interactions between river morphodynamics and riparian vegetation. Reviews of Geophysics, 51(3), 379–414. https://doi.org/10.1002/rog.20014
Corenblit, D., Davies, N. S., Steiger, J., Gibling, M. R., & Bornette, G. (2015). Considering river structure and stability in the light of evolution: Feedbacks between riparian vegetation and hydrogeomorphology. Earth Surface Processes and Landforms, 40(2), 189–207. https://doi.org/10.1002/esp.3643
Darby, S. E. (1999). Effect of riparian vegetation on flow resistance and flood potential. Journal of Hydraulic Engineering, 125(5), 443–454. https://doi.org/10.1061/(ASCE)0733-9429(1999)125:5(443)
Dosskey, M. G., Vidon, P., Gurwick, N. P., Allan, C. J., Duval, T. P., & Lowrance, R. (2010). The role of riparian vegetation in protecting and improving chemical water quality in streams. Journal of the American Water Resources Association, 46(2), 236–277. https://doi.org/10.1111/j.1752-1688.2010.00419.x
Dufour, S., Rodríguez-González, P. M., & Laslier, M. (2019). Tracing the scientific trajectory of riparian vegetation studies: Main topics, approaches and needs in a globally changing world. Science of the Total Environment, 653, 1168–1185. https://doi.org/10.1016/j.scitotenv.2018.10.383
Dybala, K. E., Matzek, V., Gardali, T., & Seavy, N. E. (2019). Carbon sequestration in riparian forests: A global synthesis and meta-analysis. Global Change Biology, 25(1), 57–67. https://doi.org/10.1111/gcb.14475
European Environment Agency. (2020). Floodplains: A natural system to preserve and restore. EEA Report No 24/2019. European Environment Agency. www.eea.europa.eu/publications/floodplains-a-natural-system-to-preserve-and-restore.
Feio, M. J., Hughes, R. M., Callisto, M., Nichols, S. J., Odume, O. N., Quintella, B. R., Kuemmerlen, M., Aguiar, F. C., Almeida, S. F. P., Alonso-EguíaLis, P., Arimoro, F. O., Dyer, F. J., Harding, J. S., Jang, S., Kaufmann, P. R., Lee, S., Li, J., Macedo, D. R., Mendes, A., … Yates, A. G. (2021). The biological assessment and rehabilitation of the world's rivers: An overview. Water, 13(3), 371. https://doi.org/10.3390/w13030371
Fliervoet, J. M., Geerling, G. W., Mostert, E., & Smits, A. J. M. (2016). Analyzing collaborative governance through social network analysis: A case study of river management along the Waal River in The Netherlands. Environmental Management, 57(2), 355–367. https://doi.org/10.1007/s00267-015-0606-x
González del Tánago, M., Martínez-Fernández, V., Aguiar, F. C., Bertoldi, W., Dufour, S., García de Jalón, D., Garófano-Gómez, V., Mandzukovski, D., & Rodríguez-González, P. M. (2021). Improving river hydromorphological assessment through better integration of riparian vegetation: Scientific evidence and guidelines. Journal of Environmental Management, 292, 112730. https://doi.org/10.1016/j.jenvman.2021.112730
González, E., Felipe-Lucia, M. R., Bourgeois, B., Boz, B., Nilsson, C., Palmer, G., & Sher, A. A. (2017). Integrative conservation of riparian zones. Biological Conservation, 211, 20–29. https://doi.org/10.1016/j.biocon.2016.10.035
González, E., Martínez-Fernández, V., Shafroth, P. B., Sher, A. A., Henry, A. L., Garófano-Gómez, V., & Corenblit, D. (2018). Regeneration of Salicaceae riparian forests in the Northern Hemisphere: A new framework and management tool. Journal of Environmental Management, 218, 374–387. https://doi.org/10.1016/j.jenvman.2018.04.069
González, E., Sher, A. A., Tabacchi, E., Masip, A., & Poulin, M. (2015). Restoration of riparian vegetation: A global review of implementation and evaluation approaches in the international, peer-reviewed literature. Journal of Environmental Management, 158, 85–94. https://doi.org/10.1016/j.jenvman.2015.04.033
Gregory, S. V., Swanson, F. J., McKee, W. A., & Cummins, K. W. (1991). An ecosystem perspective of riparian zones. Bioscience, 41, 540–551. https://doi.org/10.2307/1311607
Haas, P. M. (1992). Introduction: Epistemic communities and international policy coordination. International Organization, 46(1), 1–35 http://www.jstor.org/stable/2706951
Hanna, D. E. L., Tomscha, S. A., Ouellet Dallaire, C., & Bennett, E. M. (2018). A review of riverine ecosystem service quantification: Research gaps and recommendations. Journal of Applied Ecology, 55(3), 1299–1311. https://doi.org/10.1111/1365-2664.13045
Hobbs, R. J. (Ed.). (2000). Invasive species in a changing world. Island Press.
Hughes, F. M. R., Colston, A., & Owen, J. (2005). Restoring riparian ecosystems: The challenge of accommodating variability and designing restoration trajectories. Ecology and Society, 10(1), 12 https://www.ecologyandsociety.org/vol10/iss1/art12/
Huylenbroeck, L., Laslier, M., Dufour, S., Georges, B., Lejeune, P., & Michez, A. (2020). Using remote sensing to characterize riparian vegetation: A review of available tools and perspectives for managers. Journal of Environmental Management, 267, 110652. https://doi.org/10.1016/j.jenvman.2020.110652
Jung, T., Orlikowski, L., Henricot, B., Abad-Campos, P., Aday, A. G., Aguín Casal, O., Bakonyi, J., Cacciola, S. O., Cech, T., Chavarriaga, D., Corcobado, T., Cravador, A., Decourcelle, T., Denton, G., Diamandis, S., Doğmuş-Lehtijärvi, H. T., Franceschini, A., Ginetti, B., Green, S., … Peréz-Sierra, A. (2016). Widespread Phytophthora infestations in European nurseries put forest, semi-natural and horticultural ecosystems at high risk of Phytophthora diseases. Forest Pathology, 46(2), 134–163. https://doi.org/10.1111/efp.12239
Kail, J., Palt, M., Lorenz, A., & Hering, D. (2021). Woody buffer effects on water temperature: The role of spatial configuration and daily temperature fluctuations. Hydrological Processes, 35(1), e14008. https://doi.org/10.1002/hyp.14008
Koziol, L., Schultz, P. A., House, G. L., Bauer, J. T., Middleton, E. L., & Bever, J. D. (2018). Data from: The plant microbiome and native plant restoration: the example of native mycorrhizal fungi (Version 1, p. 95197 bytes) [Data set]. Dryad. https://doi.org/10.5061/DRYAD.BS79GK5
Kuckartz, U. (2014). Qualitative text analysis: A guide to methods, practice & using software. SAGE Publications Ltd. https://doi.org/10.4135/9781446288719
Marteau, B., Piégay, H., Chandesris, A., Michel, K., & Vaudor, L. (2022). Riparian shading mitigates warming but cannot revert thermal alteration by impoundments in lowland rivers. Earth Surface Processes and Landforms. https://doi.org/10.1002/esp.5372
Masterson, V. A., Enqvist, J. P., Stedman, R. C., & Tengö, M. (2019). Sense of place in social–ecological systems: From theory to empirics. Sustainability Science, 14(3), 555–564. https://doi.org/10.1007/s11625-019-00695-8
Merritt, D. M., Scott, M. L., LeRoy Poff, N., Auble, G. T., & Lytle, D. A. (2010). Theory, methods and tools for determining environmental flows for riparian vegetation: Riparian vegetation-flow response guilds: Riparian vegetation-hydrologic models. Freshwater Biology, 55(1), 206–225. https://doi.org/10.1111/j.1365-2427.2009.02206.x
Millennium Ecosystem Assessment. (2005). Ecosystems and human well-being: Synthesis. Island Press.
Naiman, R. J., Décamps, H., & McClain, M. E. (2005). Riparia: Ecology, conservation, and management of streamside communities. Elsevier.
O'Hare, M., Mountford, J., Maroto, J., & Gunn, I. (2016). Plant traits relevant to fluvial geomorphology and hydrological interactions. River Research and Applications, 32(2), 179–189. https://doi.org/10.1002/rra.2940
Opperman, J. J., Moyle, P. B., Larsen, E. W., Florsheim, J. L., & Manfree, A. D. (2017). Floodplains: Processes and management for ecosystem services. University of California Press.
Parsons, M., Fisher, K., & Crease, R. P. (2021). Decolonising river restoration: Restoration as acts of healing and expression of Rangatiratanga. In Decolonising blue spaces in the anthropocene. Palgrave Macmillan. https://doi.org/10.1007/978-3-030-61071-5_9
Petts, G. E., & Amoros, C. (Eds.). (1996). Fluvial hydrosystems (1st ed.). Chapman & Hall.
Politti, E., Bertoldi, W., Gurnell, A., & Henshaw, A. (2018). Feedbacks between the riparian Salicaceae and hydrogeomorphic processes: A quantitative review. Earth-Science Reviews, 176, 147–165. https://doi.org/10.1016/j.earscirev.2017.07.018
Pyšek, P., Bacher, S., Chytrý, M., Jarošík, V., Wild, J., Celesti-Grapow, L., Gassó, N., Kenis, M., Lambdon, P. W., Nentwig, W., Pergl, J., Roques, A., Sádlo, J., Solarz, W., Vilà, M., & Hulme, P. E. (2010). Contrasting patterns in the invasions of European terrestrial and freshwater habitats by alien plants, insects and vertebrates: Invasion of European habitats by alien plants and animals. Global Ecology and Biogeography, 19(3), 317–331. https://doi.org/10.1111/j.1466-8238.2009.00514.x
Rigolot, C. (2020). Transdisciplinarity as a discipline and a way of being: Complementarities and creative tensions. Humanities and Social Sciences Communications, 7(1), 100. https://doi.org/10.1057/s41599-020-00598-5
Riis, T., Kelly-Quinn, M., Aguiar, F. C., Manolaki, P., Bruno, D., Bejarano, M. D., Clerici, N., Fernandes, M. R., Franco, J. C., Pettit, N., Portela, A. P., Tammeorg, O., Tammeorg, P., Rodríguez-González, P. M., & Dufour, S. (2020). Global overview of ecosystem services provided by riparian vegetation. Bioscience, 70(6), 501–514. https://doi.org/10.1093/biosci/biaa041
Rohde, M. M., Stella, J. C., Roberts, D. A., & Singer, M. B. (2021). Groundwater dependence of riparian woodlands and the disrupting effect of anthropogenically altered streamflow. Proceedings of the National Academy of Sciences, 118(25), e2026453118. https://doi.org/10.1073/pnas.2026453118
Sabo, J. L., Sponseller, R., Dixon, M., Gade, K., Harms, T., Heffernan, J., Jani, A., Katz, G., Soykan, C., Watts, J., & Welter, J. (2005). Riparian zones increase regional species richness by harboring different, not more, species. Ecology, 86(1), 56–62. https://doi.org/10.1890/04-0668
Sher, A. A., Clark, L., Henry, A. L., Goetz, A. R. B., González, E., Tyagi, A., Simpson, I., & Bourgeois, B. (2020). The human element of restoration success: Manager characteristics affect vegetation recovery following invasive Tamarix control. Wetlands, 40(6), 1877–1895. https://doi.org/10.1007/s13157-020-01370-w
Stammel, B., Fischer, C., Cyffka, B., Albert, C., Damm, C., Dehnhardt, A., Fischer, H., Foeckler, F., Gerstner, L., Hoffmann, T. G., Iwanowski, J., Kasperidus, H. D., Linnemann, K., Mehl, D., Podschun, S. A., Rayanov, M., Ritz, S., Rumm, A., Scholz, M., … Gelhaus, M. (2020). Assessing land use and flood management impacts on ecosystem services in a river landscape (upper Danube, Germany). River Research and Applications, 37(2), 209–220. https://doi.org/10.1002/rra.3669
Stella, J. C., Battles, J. J., McBride, J. R., & Orr, B. K. (2010). Riparian seedling mortality from simulated water table recession, and the Design of Sustainable Flow Regimes on regulated Rivers. Restoration Ecology, 18, 284–294. https://doi.org/10.1111/j.1526-100X.2010.00651.x
Stella, J. C., & Bendix, J. (2019). Multiple stressors in riparian ecosystems. In Multiple stressors in river ecosystems (pp. 81–110). Elsevier. https://doi.org/10.1016/B978-0-12-811713-2.00005-4
Stella, J. C., Rodríguez-González, P. M., Dufour, S., & Bendix, J. (2013). Riparian vegetation research in Mediterranean-climate regions: Common patterns, ecological processes, and considerations for management. Hydrobiologia, 719(1), 291–315. https://doi.org/10.1007/s10750-012-1304-9
Sweeney, B. W., & Newbold, J. D. (2014). Streamside Forest buffer width needed to protect stream water quality, habitat, and organisms: A literature review. JAWRA Journal of the American Water Resources Association, 50(3), 560–584. https://doi.org/10.1111/jawr.12203
Tonkin, J. D., Merritt, D. M., Olden, J. D., Reynolds, L. V., & Lytle, D. A. (2018). Flow regime alteration degrades ecological networks in riparian ecosystems. Nature Ecology & Evolution, 2(1), 86–93. https://doi.org/10.1038/s41559-017-0379-0
Van Looy, K., Tormos, T., Ferréol, M., Villeneuve, B., Valette, L., Chandesris, A., Bougon, N., Oraison, F., & Souchon, Y. (2013). Benefits of riparian forest for the aquatic ecosystem assessed at a large geographic scale. Knowledge and Management of Aquatic Ecosystems, 408, 6. https://doi.org/10.1051/kmae/2013041
Whitham, T. G., Bailey, J. K., Schweitzer, J. A., Shuster, S. M., Bangert, R. K., LeRoy, C. J., Lonsdorf, E. V., Allan, G. J., DiFazio, S. P., Potts, B. M., Fischer, D. G., Gehring, C. A., Lindroth, R. L., Marks, J. C., Hart, S. C., Wimp, G. M., & Wooley, S. C. (2006). A framework for community and ecosystem genetics: From genes to ecosystems. Nature Reviews Genetics, 7(7), 510–523. https://doi.org/10.1038/nrg1877
Wohl, E. (2019). Forgotten legacies: Understanding and mitigating historical human alterations of river corridors. Water Resources Research, 55(7), 5181–5201. https://doi.org/10.1029/2018WR024433