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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...
Global Change Biology · 2024 · Vol. 30 · Issue 6 · Wiley
Wildfire activity is increasing globally. The resulting smoke plumes can travel hundreds to thousands of kilometers, reflecting or scattering sunlight and depositing particles within ecosystems. Several key physical, chemical, and biological processes in lakes are controlled by factors affected by smoke. The spatial and temporal scales of lake exposure to smoke are extensive and under‐recognized. We introduce the concept of th...
Ecology Letters · 2024 · Vol. 27 · Issue 5 · Wiley
There is a rich literature highlighting that pathogens are generally better adapted to infect local than novel hosts, and a separate seemingly contradictory literature indicating that novel pathogens pose the greatest threat to biodiversity and public health. Here, using Batrachochytrium dendrobatidis , the fungus associated with worldwide amphibian declines, we test the hypothesis that there is enough variance in “novel” (qua...
Journal of Biogeography · 2023 · Vol. 50 · Issue 8 · Wiley
Our primary aim was to assess the hypothesis that distinctive features of the patterns of vegetation change during successive Quaternary glacial–interglacial cycles reflect climatic differences arising from forcing differences. We addressed this hypothesis using 207 half‐degree resolution global biome pattern simulations, for time slices between 800 and 2 ka, made using the LPJ‐GUESS dynamic global vegetation model. Simulation...
Fish and Fisheries · 2022 · Vol. 23 · Issue 1 · Wiley
Species responses to climate change are often measured at broad spatiotemporal scales, which can miss the fine‐scale changes that are most relevant to conservation and fisheries management. We develop a scaleable geostatistical approach to assess how juvenile and adult fish distributions have been shaped by changes in bottom temperature and dissolved oxygen over a recent decade of warming in the northeast Pacific. Across 38 de...
Journal of Biogeography · 2021 · Vol. 48 · Issue 10 · Wiley
Aim Recent studies in southern Africa identified past biome stability as an important predictor of biodiversity. We aimed to assess the extent to which past biome stability predicts present global biodiversity patterns, and the extent to which projected climatic changes may lead to eventual biome changes in areas with constant past biome. Location Global. Taxon Spermatophyta; terrestrial vertebrates. Methods Biome constancy wa...
Histochemistry and Cell Biology · 2021 · Vol. 156 · Issue 3 · Springer
Wild-type lectins have distinct types of modular design. As a step to explain the physiological importance of their special status, hypothesis-driven protein engineering is used to generate variants. Concerning adhesion/growth-regulatory galectins, non-covalently associated homodimers are commonly encountered in vertebrates. The homodimeric galectin-7 (Gal-7) is a multifunctional context-dependent modulator. Since the possibil...
Global Change Biology · 2021 · Vol. 27 · Issue 18 · Wiley
Corals are experiencing unprecedented decline from climate change‐induced mass bleaching events. Dispersal not only contributes to coral reef persistence through demographic rescue but can also hinder or facilitate evolutionary adaptation. Locations of reefs that are likely to survive future warming therefore remain largely unknown, particularly within the context of both ecological and evolutionary processes across complex se...
Ecology · 2021 · Vol. 102 · Issue 7 · Wiley
Global environmental change is challenging species with novel conditions, such that demographic and evolutionary trajectories of populations are often shaped by the exchange of organisms and alleles across landscapes. Current ecological theory predicts that random networks with dispersal shortcuts connecting distant sites can promote persistence when there is no capacity for evolution. Here, we show with an eco‐evolutionary mo...
Frontiers in Marine Science · 2021 · Vol. 8 · Frontiers
Although previous studies have described progesterone profiles during pregnancy in the bottlenose dolphin ( Tursiops truncatus ), most of these focused on normal pregnancy (NORM) or compared NORM to only one or two abnormal pregnancy types, such as abortion (AB) or perinatal loss (PNL). Hormonal pregnancy biomarker analysis from reproductive events with different outcomes may reveal differences in concentrations so that we are...
Global Change Biology · 2021 · Vol. 27 · Issue 1 · Wiley
In an era of rapid global change, our ability to understand and predict Earth's natural systems is lagging behind our ability to monitor and measure changes in the biosphere. Bottlenecks to informing models with observations have reduced our capacity to fully exploit the growing volume and variety of available data. Here, we take a critical look at the information infrastructure that connects ecosystem modeling and measurement...
Journal of Biogeography · 2020 · Vol. 47 · Issue 10 · Wiley
Aim Insight into global biome responses to climatic and other environmental changes is essential to address key questions about past and future impacts of such changes. By simulating global biome patterns 140 ka to present, we aimed to address important questions about biome changes during this interval. Location Global. Taxon Spermatophyta. Methods Using the LPJ‐GUESS dynamic global vegetation model, we made 89 simulations dr...
Global Change Biology · 2015 · Vol. 21 · Issue 2 · Wiley
Kristina J. Anderson‐Teixeira; Stuart J. Davies; Amy C. Bennett; Erika B. Gonzalez‐Akre; Helene C. Muller‐Landau; S. Joseph Wright; Kamariah Abu Salim; Angélica M. Almeyda Zambrano; Alfonso Alonso; Jennifer L. Baltzer; Yves Basset; Norman A. Bourg; Eben N. Broadbent; Warren Y. Brockelman; Sarayudh Bunyavejchewin; David F. R. P. Burslem; Nathalie Butt; Min Cao; Dairon Cardenas; George B. Chuyong; Keith Clay; Susan Cordell; Handanakere S. Dattaraja; Xiaobao Deng; Matteo Detto; Xiaojun Du; Alvaro Duque; David L. Erikson; Corneille E.N. Ewango; Gunter A. Fischer; Christine Fletcher; Robin B. Foster; Christian P. Giardina; Gregory S. Gilbert; Nimal Gunatilleke; Savitri Gunatilleke; Zhanqing Hao; William W. Hargrove; Terese B. Hart; Billy C.H. Hau; Fangliang He; Forrest M. Hoffman; Robert W. Howe; Stephen P. Hubbell; Faith M. Inman‐Narahari; Patrick A. Jansen; Mingxi Jiang; Daniel J. Johnson; Mamoru Kanzaki; Abdul Rahman Kassim; David Kenfack; Staline Kibet; Margaret F. Kinnaird; Lisa Korte; Kamil Kral; Jitendra Kumar; Andrew J. Larson; Yide Li; Xiankun Li; Shirong Liu; Shawn K.Y. Lum; James A. Lutz; Keping Ma; Damian M. Maddalena; Jean‐Remy Makana; Yadvinder Malhi; Toby Marthews; Rafizah Mat Serudin; Sean M. McMahon; William J. McShea; Hervé R. Memiaghe; Xiangcheng Mi; Takashi Mizuno; Michael Morecroft; Jonathan A. Myers; Vojtech Novotny; Alexandre A. de Oliveira; Perry S. Ong; David A. Orwig; Rebecca Ostertag; Jan den Ouden; Geoffrey G. Parker; Richard P. Phillips; Lawren Sack; Moses N. Sainge; Weiguo Sang; Kriangsak Sri‐ngernyuang; Raman Sukumar; I‐Fang Sun; Witchaphart Sungpalee; Hebbalalu Sathyanarayana Suresh; Sylvester Tan; Sean C. Thomas; Duncan W. Thomas; Jill Thompson; Benjamin L. Turner; Maria Uriarte; Renato Valencia; Marta I. Vallejo; Alberto Vicentini; Tomáš Vrška; Xihua Wang; Xugao Wang; George Weiblen; Amy Wolf; Han Xu; Sandra Yap; Jess Zimmerman
Global change is impacting forests worldwide, threatening biodiversity and ecosystem services including climate regulation. Understanding how forests respond is critical to forest conservation and climate protection. This review describes an international network of 59 long‐term forest dynamics research sites ( CTFS ‐Forest GEO ) useful for characterizing forest responses to global change. Within very large plots (median size...