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Nutrient Cycling in Agroecosystems · 2026 · Vol. 133 · Issue 1 · Springer
Incorporating plantain into grazed pasture swards is proposed as an approach to reduce nitrate leaching and nitrous oxide emissions. However, consideration must be given to potential emission-swapping, such as a reduction in soil carbon (C), which can contribute to increases in atmospheric CO 2 . We compared the net ecosystem C balance (NECB) of two adjacent newly-sown paddocks (~ 3 ha each) of (i) traditional ryegrass and whi...
Global Ecology and Biogeography · 2026 · Vol. 35 · Issue 3 · Wiley
Aim Animal movements are a fundamental process affecting communities and ecosystems. Quantifying habitat selection across species and habitats is key for understanding how animals respond to environmental change. Currently, we lack comparative studies that examine how habitat selection varies across species traits and landscapes. We aim to quantify global patterns of habitat selection to help understand the fundamental drivers...
Ecology Letters · 2026 · Vol. 29 · Issue 3 · Wiley
Metals are essential for microbial metabolism, yet their role as limiting nutrients in freshwater streams remains poorly understood. We quantified the prevalence of metal and nutrient (co‐)limitation of primary producers in 41 streams. Metal limitation was widespread with Fe limitation eliciting the strongest and most consistent biomass responses (50% of streams). Zn limitation was also common (33% of streams), marking the fir...
Global Change Biology · 2023 · Vol. 29 · Issue 4 · Wiley
Climate warming can reduce global soil carbon stocks by enhancing microbial decomposition. However, the magnitude of this loss remains uncertain because the temperature sensitivity of the decomposition of the major fraction of soil carbon, namely resistant carbon, is not fully known. It is now believed that the resistance of soil carbon mostly depends on microbial accessibility of soil carbon with physical protection being the...
Contributions to Mineralogy and Petrology · 2022 · Vol. 177 · Issue 10 · Springer
The transport and degassing pathways of volatiles through large silicic magmatic systems are central to understanding geothermal fluid compositions, ore deposit genesis, and volcanic eruption dynamics and impacts. Here, we document sulfur (S), chlorine (Cl), and fluorine (F) concentrations in a range of host materials in eruptive deposits from Taupō volcano (New Zealand). Materials analysed are groundmass glass, silicic melt i...
Ecology · 2022 · Vol. 103 · Issue 10 · Wiley
Roland Kays; Michael V. Cove; Jose Diaz; Kimberly Todd; Claire Bresnan; Matt Snider; Thomas E. Lee; Jonathan G. Jasper; Brianna Douglas; Anthony P. Crupi; Katherine C. B. Weiss; Helen Rowe; Tiffany Sprague; Jan Schipper; Christopher A. Lepczyk; Jean E. Fantle‐Lepczyk; Jon Davenport; Marketa Zimova; Zach Farris; Jacque Williamson; M. Caitlin Fisher‐Reid; Drew Rezendes; Sean M. King; Petros Chrysafis; Alex J. Jensen; David S. Jachowski; Katherine C. King; Daniel J. Herrera; Sophie Moore; Marius van der Merwe; Jason V. Lombardi; Maksim Sergeyev; Michael E. Tewes; Robert V. Horan; Michael S. Rentz; Ace Driver; La Roy S. E. Brandt; Christopher Nagy; Peter Alexander; Sean P. Maher; Andrea K. Darracq; Evan G. Barr; George Hess; Stephen L. Webb; Mike D. Proctor; John P. Vanek; Diana J. R. Lafferty; Tru Hubbard; Jaime E. Jiménez; Craig McCain; Jorie Favreau; Jack Fogarty; Jacob Hill; Steven Hammerich; Morgan Gray; Christine C. Rega‐Brodsky; Caleb Durbin; Elizabeth A. Flaherty; Jarred Brooke; Stephanie S. Coster; Richard G. Lathrop; Katarina Russell; Daniel A. Bogan; Hila Shamon; Brigit Rooney; Aimee Rockhill; Robert C. Lonsinger; M. Teague O'Mara; Justin A. Compton; Erika L. Barthelmess; Katherine E. Andy; Jerrold L. Belant; Tyler Petroelje; Nathaniel H. Wehr; Dean E. Beyer; Daniel G. Scognamillo; Chris Schalk; Kara Day; Caroline N. Ellison; Chip Ruthven; Blaine Nunley; Sarah Fritts; Christopher A. Whittier; Sean A. Neiswenter; Robert Pelletier; Brett A. DeGregorio; Erin K. Kuprewicz; Miranda L. Davis; Carolina Baruzzi; Marcus A. Lashley; Brandon McDonald; David Mason; Derek R. Risch; Maximilian L. Allen; Laura S. Whipple; Jinelle H. Sperry; Emmarie Alexander; Patrick J. Wolff; Robert H. Hagen; Alessio Mortelliti; Amay Bolinjcar; Andrew M. Wilson; Scott Van Norman; Cailey Powell; Henry Coletto; Martha Schauss; Helen Bontrager; James Beasley; Susan N. Ellis‐Felege; Samuel R. Wehr; Sean T. Giery; Charles E. Pekins; Summer H. LaRose; Ronald S. Revord; Christopher P. Hansen; Lonnie Hansen; Joshua J. Millspaugh; Adam Zorn; Brian D. Gerber; Kylie Rezendes; Jessie Adley; Jennifer Sevin; Austin M. Green; Çağan H. Şekercioğlu; Mary E. Pendergast; Kayleigh Mullen; Tori Bird; Andrew J. Edelman; Andrea Romero; Brian J. O'Neill; Noel Schmitz; Rebecca A. Vandermus; Jesse M. Alston; Kellie M. Kuhn; Steven C. Hasstedt; Damon B. Lesmeister; Cara L. Appel; Christopher Rota; Jennifer L. Stenglein; Christine Anhalt‐Depies; Carrie L. Nelson; Robert A. Long; Kathryn R. Remine; Mark J. Jordan; L. Mark Elbroch; Dylan Bergman; Sara Cendejas‐Zarelli; Kim Sager‐Fradkin; Mike Conner; Gail Morris; Elizabeth Parsons; Haydée Hernández‐Yáñez; William J. McShea
Managing wildlife populations in the face of global change requires regular data on the abundance and distribution of wild animals, but acquiring these over appropriate spatial scales in a sustainable way has proven challenging. Here we present the data from Snapshot USA 2020, a second annual national mammal survey of the USA. This project involved 152 scientists setting camera traps in a standardized protocol at 1485 location...
Global Ecology and Biogeography · 2022 · Vol. 31 · Issue 8 · Wiley
Maarten J. E. Broekman; Jelle P. Hilbers; Mark A. J. Huijbregts; Thomas Mueller; Abdullahi H. Ali; Henrik Andrén; Jeanne Altmann; Malin Aronsson; Nina Attias; Hattie L. A. Bartlam‐Brooks; Floris M. van Beest; Jerrold L. Belant; Dean E. Beyer; Laura Bidner; Niels Blaum; Randall B. Boone; Mark S. Boyce; Michael B. Brown; Francesca Cagnacci; Rok Černe; Simon Chamaillé‐Jammes; Nandintsetseg Dejid; Jasja Dekker; Arnaud L. J. Desbiez; Samuel L. Díaz‐Muñoz; Julian Fennessy; Claudia Fichtel; Christina Fischer; Jason T. Fisher; Ilya Fischhoff; Adam T. Ford; John M. Fryxell; Benedikt Gehr; Jacob R. Goheen; Morgan Hauptfleisch; A. J. Mark Hewison; Robert Hering; Marco Heurich; Lynne A. Isbell; René Janssen; Florian Jeltsch; Petra Kaczensky; Peter M. Kappeler; Miha Krofel; Scott LaPoint; A. David M. Latham; John D. C. Linnell; A. Catherine Markham; Jenny Mattisson; Emilia Patricia Medici; Guilherme de Miranda Mourão; Bram Van Moorter; Ronaldo G. Morato; Nicolas Morellet; Atle Mysterud; Stephen Mwiu; John Odden; Kirk A. Olson; Aivars Ornicāns; Nives Pagon; Manuela Panzacchi; Jens Persson; Tyler Petroelje; Christer Moe Rolandsen; David Roshier; Daniel I. Rubenstein; Sonia Saïd; Albert R. Salemgareyev; Hall Sawyer; Niels Martin Schmidt; Nuria Selva; Agnieszka Sergiel; Jared Stabach; Jenna Stacy‐Dawes; Frances E. C. Stewart; Jonas Stiegler; Olav Strand; Siva Sundaresan; Nathan J. Svoboda; Wiebke Ullmann; Ulrich Voigt; Jake Wall; Martin Wikelski; Christopher C. Wilmers; Filip Zięba; Tomasz Zwijacz‐Kozica; Aafke M. Schipper; Marlee A. Tucker
Aim Macroecological studies that require habitat suitability data for many species often derive this information from expert opinion. However, expert‐based information is inherently subjective and thus prone to errors. The increasing availability of GPS tracking data offers opportunities to evaluate and supplement expert‐based information with detailed empirical evidence. Here, we compared expert‐based habitat suitability info...
Global Change Biology · 2022 · Vol. 28 · Issue 11 · Wiley
In 2020, the Australian and New Zealand flux research and monitoring network, OzFlux, celebrated its 20 th anniversary by reflecting on the lessons learned through two decades of ecosystem studies on global change biology. OzFlux is a network not only for ecosystem researchers, but also for those ‘next users’ of the knowledge, information and data that such networks provide. Here, we focus on eight lessons across topics of cli...
Global Change Biology · 2021 · Vol. 27 · Issue 23 · Wiley
Climate warming may be exacerbated if rising temperatures stimulate losses of soil carbon to the atmosphere. The direction and magnitude of this carbon‐climate feedback are uncertain, largely due to lack of knowledge of the thermal adaptation of the physiology and composition of soil microbial communities. Here, we applied the macromolecular rate theory (MMRT) to describe the temperature response of the microbial decomposition...
Environmental Microbiology · 2021 · Vol. 23 · Issue 6 · Wiley
Summary Forest‐to‐pasture conversion is known to cause global losses in plant and animal diversity, yet impacts of livestock management after such conversion on vital microbial communities in adjoining natural ecosystems remain poorly understood. We examined how pastoral land management practices impact soil microorganisms in adjacent native forest fragments, by comparing bacterial communities sampled along 21 transects bisect...
Ecology · 2021 · Vol. 102 · Issue 6 · Wiley
Michael V. Cove; Roland Kays; Helen Bontrager; Claire Bresnan; Monica Lasky; Taylor Frerichs; Renee Klann; Thomas E. Lee; Seth C. Crockett; Anthony P. Crupi; Katherine C. B. Weiss; Helen Rowe; Tiffany Sprague; Jan Schipper; Chelsey Tellez; Christopher A. Lepczyk; Jean E. Fantle‐Lepczyk; Scott LaPoint; Jacque Williamson; M. Caitlin Fisher‐Reid; Sean M. King; Alexandra J. Bebko; Petros Chrysafis; Alex J. Jensen; David S. Jachowski; Joshua Sands; Kelly Anne MacCombie; Daniel J. Herrera; Marius van der Merwe; Travis W. Knowles; Robert V. Horan; Michael S. Rentz; LaRoy S. E. Brandt; Christopher Nagy; Brandon T. Barton; Weston C. Thompson; Sean P. Maher; Andrea K. Darracq; George Hess; Arielle W. Parsons; Brenna Wells; Gary W. Roemer; Cristian J. Hernandez; Matthew E. Gompper; Stephen L. Webb; John P. Vanek; Diana J. R. Lafferty; Amelia M. Bergquist; Tru Hubbard; Tavis Forrester; Darren Clark; Connor Cincotta; Jorie Favreau; Aaron N. Facka; Michelle Halbur; Steven Hammerich; Morgan Gray; Christine C. Rega‐Brodsky; Caleb Durbin; Elizabeth A. Flaherty; Jarred M. Brooke; Stephanie S. Coster; Richard G. Lathrop; Katarina Russell; Daniel A. Bogan; Rachel Cliché; Hila Shamon; Melissa T. R. Hawkins; Sharyn B. Marks; Robert C. Lonsinger; M. Teague O'Mara; Justin A. Compton; Melinda Fowler; Erika L. Barthelmess; Katherine E. Andy; Jerrold L. Belant; Dean E. Beyer; Todd M. Kautz; Daniel G. Scognamillo; Christopher M. Schalk; Matthew S. Leslie; Sophie L. Nasrallah; Caroline N. Ellison; Chip Ruthven; Sarah Fritts; Jaquelyn Tleimat; Mandy Gay; Christopher A. Whittier; Sean A. Neiswenter; Robert Pelletier; Brett A. DeGregorio; Erin K. Kuprewicz; Miranda L. Davis; Adrienne Dykstra; David S. Mason; Carolina Baruzzi; Marcus A. Lashley; Derek R. Risch; Melissa R. Price; Maximilian L. Allen; Laura S. Whipple; Jinelle H. Sperry; Robert H. Hagen; Alessio Mortelliti; Bryn E. Evans; Colin E. Studds; Alexej P. K. Sirén; Jillian Kilborn; Chris Sutherland; Paige Warren; Todd Fuller; Nyeema C. Harris; Neil H. Carter; Edward Trout; Marketa Zimova; Sean T. Giery; Fabiola Iannarilli; Summer D. Higdon; Ronald S. Revord; Christopher P. Hansen; Joshua J. Millspaugh; Adam Zorn; John F. Benson; Nathaniel H. Wehr; Jaylin N. Solberg; Brian D. Gerber; Jessica C. Burr; Jennifer Sevin; Austin M. Green; Çağan H. Şekercioğlu; Mary Pendergast; Kelsey A. Barnick; Andrew J. Edelman; Joanne R. Wasdin; Andrea Romero; Brian J. O'Neill; Noel Schmitz; Jesse M. Alston; Kellie M. Kuhn; Damon B. Lesmeister; Mark A. Linnell; Cara L. Appel; Christopher Rota; Jennifer L. Stenglein; Christine Anhalt‐Depies; Carrie Nelson; Robert A. Long; Kodi Jo Jaspers; Kathryn R. Remine; Mark J. Jordan; Daniel Davis; Haydée Hernández‐Yáñez; Jennifer Y. Zhao; William J. McShea
With the accelerating pace of global change, it is imperative that we obtain rapid inventories of the status and distribution of wildlife for ecological inferences and conservation planning. To address this challenge, we launched the SNAPSHOT USA project, a collaborative survey of terrestrial wildlife populations using camera traps across the United States. For our first annual survey, we compiled data across all 50 states dur...
Global Ecology and Biogeography · 2020 · Vol. 29 · Issue 6 · Wiley
Aim Predictions of plant traits over space and time are increasingly used to improve our understanding of plant community responses to global environmental change. A necessary step forward is to assess the reliability of global trait predictions. In this study, we predict community mean plant traits at the global scale and present a systematic evaluation of their reliability in terms of the accuracy of the models, ecological r...
Global Change Biology · 2018 · Vol. 24 · Issue 4 · Wiley
Temperature is a crucial factor in determining the rates of ecosystem processes, for example, leaf respiration ( R ) – the flux of plant respired CO 2 from leaves to the atmosphere. Generally, R increases exponentially with temperature and formulations such as the Arrhenius equation are widely used in earth system models. However, experimental observations have shown a consequential and consistent departure from an exponential...
Global Change Biology · 2017 · Vol. 23 · Issue 2 · Wiley
The sustainability of using irrigation to produce food depends not only on the availability of sufficient water, but also on the soil's ‘response’ to irrigation. Stocks of carbon (C) and nitrogen (N) are key components of soil organic matter ( SOM ), which is important for sustainable agricultural production. While there is some information about the effects of irrigation on soil C stocks in cropping systems, there is a paucit...
Global Change Biology · 2014 · Vol. 20 · Issue 11 · Wiley
Our current understanding of the temperature response of biological processes in soil is based on the Arrhenius equation. This predicts an exponential increase in rate as temperature rises, whereas in the laboratory and in the field, there is always a clearly identifiable temperature optimum for all microbial processes. In the laboratory, this has been explained by denaturation of enzymes at higher temperatures, and in the fie...
Conservation Biology · 2014 · Vol. 28 · Issue 4 · Wiley
Assessing temporal changes in species extinction risk is necessary for measuring conservation success or failure and for directing conservation resources toward species or regions that would benefit most. Yet, there is no long‐term picture of genuine change that allows one to associate species extinction risk trends with drivers of change or conservation actions. Through a review of 40 years of IUCN‐related literature sources...