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Ambio · 2026 · Vol. 55 · Issue 8 · Springer
Arctic freshwater biodiversity is rapidly changing due to climate warming, resource extraction, infrastructure development, and landscape transformation. To improve understanding, predict future responses, and inform policy formulation, research needs must be clearly identified. Using a horizon scan survey, Arctic freshwater experts from government, international agencies, and Indigenous Peoples identified 77 biodiversity rese...
Global Change Biology · 2026 · Vol. 32 · Issue 8 · Wiley
Primary production underpins much of ecosystem functioning and is often limited by nutrient and water availability. Ongoing global increases in nutrient inputs and interannual precipitation variability are thus likely to impact primary production, with unclear consequences for interannual variability in plant biomass. We used data from 35 grasslands in the Nutrient Network coordinated fertilization experiment to test if nutrie...
Limnology and Oceanography · 2026 · Vol. 71 · Issue 2 · Wiley
Diverse environmental drivers influence food web energy and nutrient flows, a key ecosystem function, yet their relative importance remains poorly known. We compiled thousands of bulk stable isotope measurements (carbon and nitrogen) of brown trout ( Salmo trutta , n = 2854) and Arctic charr ( Salvelinus alpinus , n = 3062) from 120 cold‐water lakes across northern Europe, spanning 0.02 to 1090 km 2 in size, to quantify the re...
Frontiers in Marine Science · 2025 · Vol. 12 · Frontiers
Determining the distributions of marine animals is a challenge, particularly for highly migratory species like sharks. In the United States, several shark populations are beginning to recover following exploitation, including the white shark ( Carcharodon carcharias ). Recently, reports of white sharks have increased in the northern Gulf of Mexico (hereafter Gulf), but determining whether these reports represent actual changes...
Limnology and Oceanography · 2025 · Vol. 70 · Issue 4 · Wiley
The attraction‐production continuum in fishery management centers on the extent to which artificial reefs increase fish production or whether they simply redistribute fish. Reef systems could produce carbon to support growth of higher trophic levels. Therefore, we aimed to understand carbon flows at lower trophic levels on shallow‐water (11 m) artificial reefs within a region which hosts an extensive artificial reef network. W...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 2 · Wiley
Jose B. Lanuza; Tiffany M. Knight; Nerea Montes‐Perez; Will Glenny; Paola Acuña; Matthias Albrecht; Maddi Artamendi; Isabelle Badenhausser; Joanne M. Bennett; Paolo Biella; Ricardo Bommarco; Andree Cappellari; Sílvia Castro; Yann Clough; Pau Colom; Joana Costa; Nathan Cyrille; Natasha de Manincor; Paula Dominguez‐Lapido; Christophe Dominik; Yoko L. Dupont; Reinart Feldmann; Emeline Felten; Victoria Ferrero; William Fiordaliso; Alessandro Fisogni; Úna Fitzpatrick; Marta Galloni; Hugo Gaspar; Elena Gazzea; Irina Goia; Carmelo Gómez‐Martínez; Miguel A. González‐Estévez; Juan Pedro González‐Varo; Ingo Grass; Jiří Hadrava; Nina Hautekèete; Veronica Hederström; Ruben Heleno; Sandra Hervias‐Parejo; Jonna M. Heuschele; Bernhard Hoiss; Andrea Holzschuh; Sebastian Hopfenmüller; José M. Iriondo; Birgit Jauker; Frank Jauker; Jana Jersáková; Katharina Kallnik; Reet Karise; David Kleijn; Stefan Klotz; Theresia Krausl; Elisabeth Kühn; Carlos Lara‐Romero; Michelle Larkin; Emilien Laurent; Amparo Lázaro; Felipe Librán‐Embid; Yicong Liu; Sara Lopes; Francisco López‐Núñez; João Loureiro; Ainhoa Magrach; Marika Mänd; Lorenzo Marini; Rafel Beltran Mas; François Massol; Corina Maurer; Denis Michez; Francisco P. Molina; Javier Morente‐López; Sarah Mullen; Georgios Nakas; Lena Neuenkamp; Arkadiusz Nowak; Catherine J. O'Connor; Aoife O'Rourke; Erik Öckinger; Jens M. Olesen; Øystein H. Opedal; Theodora Petanidou; Yves Piquot; Simon G. Potts; Eileen F. Power; Willem Proesmans; Demetra Rakosy; Sara Reverté; Stuart P. M. Roberts; Maj Rundlöf; Laura Russo; Bertrand Schatz; Jeroen Scheper; Oliver Schweiger; Pau Enric Serra; Catarina Siopa; Henrik G. Smith; Dara Stanley; Valentin Ştefan; Ingolf Steffan‐Dewenter; Jane C. Stout; Louis Sutter; Elena Motivans Švara; Sebastian Świerszcz; Amibeth Thompson; Anna Traveset; Annette Trefflich; Robert Tropek; Teja Tscharntke; Adam J. Vanbergen; Montserrat Vilà; Ante Vujić; Cian White; Jennifer B. Wickens; Victoria B. Wickens; Marie Winsa; Leana Zoller; Ignasi Bartomeus
Motivation Pollinators play a crucial role in maintaining Earth's terrestrial biodiversity. However, rapid human‐induced environmental changes are compromising the long‐term persistence of plant‐pollinator interactions. Unfortunately, we lack robust, generalisable data capturing how plant‐pollinator communities are structured across space and time. Here, we present the EuPPollNet (European Plant‐Pollinator Networks) database,...
Global Change Biology · 2025 · Vol. 31 · Issue 1 · Wiley
Toby P. N. Tsang; A. A. Amado De Santis; Gabriela Armas‐Quiñonez; John S. Ascher; Eva Samanta Ávila‐Gómez; András Báldi; Kimberly M. Ballare; Mario V. Balzan; Weronika Banaszak‐Cibicka; Svenja Bänsch; Yves Basset; Adam J. Bates; Jessica M. Baumann; Mariana Beal‐Neves; Ashley Bennett; Antonio Diego M. Bezerra; Betina Blochtein; Riccardo Bommarco; Berry Brosi; Laura A. Burkle; Luísa G. Carvalheiro; Ignacio Castellanos; Marcela Cely‐Santos; Hamutahl Cohen; Drissa Coulibaly; Saul A. Cunningham; Sarah Cusser; Isabelle Dajoz; Deborah A. Delaney; Ek Del‐Val; Monika Egerer; Markus P. Eichhorn; Eunice Enríquez; Martin H. Entling; Natalia Escobedo‐Kenefic; Pedro Maria Abreu Ferreira; Gordon Fitch; Jessica R. K. Forrest; Valérie Fournier; Robert Fowler; Breno M. Freitas; Hannah R. Gaines‐Day; Benoît Geslin; Jaboury Ghazoul; Paul Glaum; Jose L. Gonzalez‐Andujar; Adrian González‐Chaves; Heather Grab; Claudio Gratton; Solène Guenat; Catalina Gutiérrez‐Chacón; Mark A. Hall; Mick E. Hanley; Annika Hass; Ernest Ireneusz Hennig; Martin Hermy; Juliana Hipólito; Andrea Holzschuh; Sebastian Hopfenmüller; Keng‐Lou James Hung; Kristoffer Hylander; Jordi Izquierdo; Mary A. Jamieson; Birgit Jauker; Steve Javorek; Shalene Jha; Björn K. Klatt; David Kleijn; Alexandra‐Maria Klein; Anikó Kovács‐Hostyánszki; Jochen Krauss; Michael Kuhlmann; Patricia Landaverde‐González; Tanya Latty; Misha Leong; Susannah B. Lerman; Yunhui Liu; Ana Carolina Pereira Machado; Anson Main; Rachel Mallinger; Yael Mandelik; Bruno Ferreira Marques; Kevin Matteson; Frédéric McCune; Ling‐Zeng Meng; Jean Paul Metzger; Paula María Montoya‐Pfeiffer; Carolina Morales; Lora Morandin; Jane Morrison; Sonja Mudri‐Stojnić; Pakorn Nalinrachatakan; Olivia Norfolk; Mark Otieno; Mia G. Park; Stacy M. Philpott; Gideon Pisanty; Montserrat Plascencia; Simon G. Potts; Eileen F. Power; Kit Prendergast; Robyn D. Quistberg; Davi de Lacerda Ramos; André Rodrigo Rech; Victoria Reynolds; Miriam H. Richards; Stuart P. M. Roberts; Malena Sabatino; Ulrika Samnegård; Hillary Sardiñas; Karina Sánchez‐Echeverría; Fernanda Teixeira Saturni; Jeroen Scheper; Amber R. Sciligo; C. Sheena Sidhu; Brian J. Spiesman; Tuanjit Sritongchuay; Ingolf Steffan‐Dewenter; Katharina Stein; Alyssa B. Stewart; Jane C. Stout; Hisatomo Taki; Pornpimon Tangtorwongsakul; Caragh G. Threlfall; Carla Faleiro Tinoco; Teja Tscharntke; Katherine J. Turo; Chatura Vaidya; Rémy Vandame; Carlos H. Vergara; Blandina F. Viana; Eric Vides‐Borrell; Natapot Warrit; Elisabeth Webb; Catrin Westphal; Jennifer B. Wickens; Neal M. Williams; Nicholas S. G. Williams; Caleb J. Wilson; Panlong Wu; Elsa Youngsteadt; Yi Zou; Lauren C. Ponisio; Timothy C. Bonebrake
Land use change threatens global biodiversity and compromises ecosystem functions, including pollination and food production. Reduced taxonomic α‐diversity is often reported under land use change, yet the impacts could be different at larger spatial scales (i.e., γ‐diversity), either due to reduced β‐diversity amplifying diversity loss or increased β‐diversity dampening diversity loss. Additionally, studies often focus on taxo...
Ecology Letters · 2025 · Vol. 28 · Issue 1 · Wiley
Accurately representing the relationships between nitrogen supply and photosynthesis is crucial for reliably predicting carbon–nitrogen cycle coupling in Earth System Models (ESMs). Most ESMs assume positive correlations amongst soil nitrogen supply, leaf nitrogen content, and photosynthetic capacity. However, leaf photosynthetic nitrogen demand may influence the leaf nitrogen response to soil nitrogen supply; thus, responses...
Fish and Fisheries · 2024 · Vol. 25 · Issue 5 · Wiley
Cold‐water lakes situated in high latitudes and altitudes have pivotal socio‐ecological importance both globally and locally. However, they are increasingly threatened by multiple anthropogenic stressors, such as climate change, hydropower and invasive species. The development of efficient management strategies is therefore urgently needed and requires a comprehensive understanding of the factors influencing the biodiversity a...
Fish and Fisheries · 2024 · Vol. 25 · Issue 5 · Wiley
Depredation (the partial or complete removal of a hooked species by a non‐target species) is a human–wildlife conflict as old as humans and the sea. In some ways, depredation is no different today than it was a century ago. But in many ways, this conflict has become more complicated. Following three decades of successful management, some US shark populations have begun to rebuild. However, many anglers attribute perceived incr...
Global Change Biology · 2024 · Vol. 30 · Issue 4 · Wiley
Climate change and other anthropogenic disturbances are increasing liana abundance and biomass in many tropical and subtropical forests. While the effects of living lianas on species diversity, ecosystem carbon, and nutrient dynamics are receiving increasing attention, the role of dead lianas in forest ecosystems has been little studied and is poorly understood. Trees and lianas coexist as the major woody components of forests...