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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...
Ecology Letters · 2024 · Vol. 27 · Issue 6 · Wiley
In North America, white‐nose syndrome (WNS) has caused precipitous declines in hibernating bat populations, raising the question of whether the rapid loss of arthropodivorous bats may affect the abundance of their prey. During the summers of 2015–2018 (1 year after the arrival of WNS in Wisconsin, USA), we performed intensive arthropod black‐light trapping, ultrasonic acoustic monitoring, and emergence counts at 10 little brow...
Global Change Biology · 2021 · Vol. 27 · Issue 22 · Wiley
Warming temperatures are allowing native insect herbivores to expand into regions that previously exceeded their thermal tolerance, encounter new host species, and pose significant threats to native communities. However, the dynamics of these expansions remain poorly understood, particularly in the extent to which outbreaks remain reliant on emigration from historical hosts or are driven by local reproduction within novel host...
Ecology Letters · 2021 · Vol. 24 · Issue 9 · Wiley
Agricultural intensification is a key suspect among putative drivers of recent insect declines, but an explicit link between historical change in agricultural land cover and insect occurrence is lacking. Determining whether agriculture impacts beneficial insects (e.g. pollinators), is crucial to enhancing agricultural sustainability. Here, we combine large spatiotemporal sets of historical bumble bee and agricultural records t...
Molecular Ecology · 2021 · Vol. 30 · Issue 3 · Wiley
Although most predators are generalists, the majority of studies on the association between prey availability and prey consumption have focused on specialist predators. To investigate the role of highly generalist predators in a complex food web, we measured the relationships between prey consumption and prey availability in two common arthropodivorous bats. Specifically, we used high‐throughput amplicon sequencing coupled wit...
Global Change Biology · 2017 · Vol. 23 · Issue 11 · Wiley
Agricultural intensification is a leading cause of global biodiversity loss, which can reduce the provisioning of ecosystem services in managed ecosystems. Organic farming and plant diversification are farm management schemes that may mitigate potential ecological harm by increasing species richness and boosting related ecosystem services to agroecosystems. What remains unclear is the extent to which farm management schemes af...
Ecology · 2017 · Vol. 98 · Issue 11 · Wiley
Allochthonous resource movement across ecosystem boundaries creates episodic linkages between ecosystems. The sensitivity of the community to external resources of varying duration can alter the baseline upon which future pulses of allochthony can act. We explored the terrestrial ecosystem response to pulsed inputs of lake‐derived resources with a manipulative experiment in a subarctic heathland where we assessed plant communi...
Ecology · 2017 · Vol. 98 · Issue 2 · Wiley
The chironomids of Lake Mývatn show extreme population fluctuations that affect most aspects of the lake ecosystem. During periods of high chironomid densities, chironomid larvae comprise over 90% of aquatic secondary production. Here, we show that chironomid larvae substantially stimulate benthic gross primary production ( GPP ) and net primary production ( NPP ), despite consuming benthic algae. Benthic GPP in experimental m...
Ecology · 2016 · Vol. 97 · Issue 6 · Wiley
In plant–pollinator networks, foraging choices by pollinators help form the connecting links between species. Flexible foraging should therefore play an important role in defining network topology. Factors such as morphological trait complementarity limit a pollinator's pool of potential floral resources, but which potential resource species are actually utilized at a location depends on local environmental and ecological cont...
Ecology · 2015 · Vol. 96 · Issue 2 · Wiley
Adjacent ecosystems are influenced by organisms that move across boundaries, such as insects with aquatic larval stages and terrestrial adult stages, which transport energy and nutrients from water to land. However, the ecosystem‐level effect of aquatic insects on land has generally been ignored, perhaps because the organisms themselves are individually small. At the naturally productive Lake Mývatn, Iceland, we used two readi...
Ecology Letters · 2013 · Vol. 16 · Issue 5 · Wiley
Bees provide essential pollination services that are potentially affected both by local farm management and the surrounding landscape. To better understand these different factors, we modelled the relative effects of landscape composition (nesting and floral resources within foraging distances), landscape configuration (patch shape, interpatch connectivity and habitat aggregation) and farm management (organic vs. conventional...