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Global Change Biology · 2026 · Vol. 32 · Issue 2 · Wiley
In 2023, more than half of olive harvests ( Olea europaea ) across Spain, Greece, and Türkiye were lost to drought. The same year late freeze destroyed 90% of the peach crop ( Prunus persica ) on the Georgia Piedmont and the apple crop ( Malus domestica ) in central New York, Vermont, and southern Quebec. Climate extremes now rank with the costliest threats to agriculture, but their role in forest recovery from diebacks that a...
Global Change Biology · 2025 · Vol. 31 · Issue 2 · Wiley
Extreme fire spread events rapidly burn large areas with disproportionate impacts on people and ecosystems. Such events are associated with warmer and drier fire seasons and are expected to increase in the future. Our understanding of the landscape outcomes of extreme events is limited, particularly regarding whether they burn more severely or produce spatial patterns less conducive to ecosystem recovery. To assess relationshi...
Global Change Biology · 2024 · Vol. 30 · Issue 1 · Wiley
Climate change is contributing to declines of insects through rising temperatures, altered precipitation patterns, and an increasing frequency of extreme events. The impacts of both gradual and sudden shifts in weather patterns are realized directly on insect physiology and indirectly through impacts on other trophic levels. Here, we investigated direct effects of seasonal weather on butterfly occurrences and indirect effects...
Global Change Biology · 2023 · Vol. 29 · Issue 24 · Wiley
Climate warming, land use change, and altered fire regimes are driving ecological transformations that can have critical effects on Earth's biota. Fire refugia—locations that are burned less frequently or severely than their surroundings—may act as sites of relative stability during this period of rapid change by being resistant to fire and supporting post‐fire recovery in adjacent areas. Because of their value to forest ecosy...
Global Ecology and Biogeography · 2023 · Vol. 32 · Issue 5 · Wiley
Michal Bogdziewicz; Marie‐Claire Aravena Acuña; Robert Andrus; Davide Ascoli; Yves Bergeron; Daniel Brveiller; Thomas Boivin; Raul Bonal; Thomas Caignard; Maxime Cailleret; Rafael Calama; Sergio Donoso Calderon; J. Julio Camarero; Chia‐Hao Chang‐Yang; Jerome Chave; Francesco Chianucci; Natalie L. Cleavitt; Benoit Courbaud; Andrea Cutini; Thomas Curt; Adrian J. Das; Hendrik Davi; Nicolas Delpierre; Sylvain Delzon; Michael Dietze; Laurent Dormont; William Farfan‐Rios; Catherine A. Gehring; Gregory S. Gilbert; Georg Gratzer; Cathryn H. Greenberg; Arthur Guignabert; Qinfeng Guo; Andrew Hacket‐Pain; Arndt Hampe; Qingmin Han; Kazuhiko Hoshizaki; Ines Ibanez; Jill F. Johnstone; Valentin Journé; Thomas Kitzberger; Johannes M. H. Knops; Georges Kunstler; Richard Kobe; Jonathan G. A. Lageard; Jalene M. LaMontagne; Mateusz Ledwon; Theodor Leininger; Jean‐Marc Limousin; James A. Lutz; Diana Macias; Anders Marell; Eliot J. B. McIntire; Emily Moran; Renzo Motta; Jonathan A. Myers; Thomas A. Nagel; Shoji Naoe; Mahoko Noguchi; Michio Oguro; Hiroko Kurokawa; Jean‐Marc Ourcival; Robert Parmenter; Ignacio M. Perez‐Ramos; Lukasz Piechnik; Tomasz Podgórski; John Poulsen; Tong Qiu; Miranda D. Redmond; Chantal D. Reid; Kyle C. Rodman; Pavel Šamonil; Jan Holik; C. Lane Scher; Harald Schmidt Van Marle; Barbara Seget; Mitsue Shibata; Shubhi Sharma; Miles Silman; Michael A. Steele; Jacob N. Straub; I‐Fang Sun; Samantha Sutton; Jennifer J. Swenson; Peter A. Thomas; Maria Uriarte; Giorgio Vacchiano; Thomas T. Veblen; Boyd Wright; S. Joseph Wright; Thomas G. Whitham; Kai Zhu; Jess K. Zimmerman; Magdalna Zywiec; James S. Clark
Aim Our understanding of the mechanisms that maintain forest diversity under changing climate can benefit from knowledge about traits that are closely linked to fitness. We tested whether the link between traits and seed number and seed size is consistent with two hypotheses, termed the leaf economics spectrum and the plant size syndrome, or whether reproduction represents an independent dimension related to a seed size–seed n...
Ecology Letters · 2022 · Vol. 25 · Issue 6 · Wiley
Valentin Journé; Robert Andrus; Marie‐Claire Aravena; Davide Ascoli; Roberta Berretti; Daniel Berveiller; Michal Bogdziewicz; Thomas Boivin; Raul Bonal; Thomas Caignard; Rafael Calama; Jesús Julio Camarero; Chia‐Hao Chang‐Yang; Benoit Courbaud; Francois Courbet; Thomas Curt; Adrian J. Das; Evangelia Daskalakou; Hendrik Davi; Nicolas Delpierre; Sylvain Delzon; Michael Dietze; Sergio Donoso Calderon; Laurent Dormont; Josep Maria Espelta; Timothy J. Fahey; William Farfan‐Rios; Catherine A. Gehring; Gregory S. Gilbert; Georg Gratzer; Cathryn H. Greenberg; Qinfeng Guo; Andrew Hacket‐Pain; Arndt Hampe; Qingmin Han; Janneke Hille Ris Lambers; Kazuhiko Hoshizaki; Ines Ibanez; Jill F. Johnstone; Daisuke Kabeya; Roland Kays; Thomas Kitzberger; Johannes M. H. Knops; Richard K. Kobe; Georges Kunstler; Jonathan G. A. Lageard; Jalene M. LaMontagne; Theodor Leininger; Jean‐Marc Limousin; James A. Lutz; Diana Macias; Eliot J. B. McIntire; Christopher M. Moore; Emily Moran; Renzo Motta; Jonathan A. Myers; Thomas A. Nagel; Kyotaro Noguchi; Jean‐Marc Ourcival; Robert Parmenter; Ian S. Pearse; Ignacio M. Perez‐Ramos; Lukasz Piechnik; John Poulsen; Renata Poulton‐Kamakura; Tong Qiu; Miranda D. Redmond; Chantal D. Reid; Kyle C. Rodman; Francisco Rodriguez‐Sanchez; Javier D. Sanguinetti; C. Lane Scher; Harald Schmidt Van Marle; Barbara Seget; Shubhi Sharma; Miles Silman; Michael A. Steele; Nathan L. Stephenson; Jacob N. Straub; Jennifer J. Swenson; Margaret Swift; Peter A. Thomas; Maria Uriarte; Giorgio Vacchiano; Thomas T. Veblen; Amy V. Whipple; Thomas G. Whitham; Boyd Wright; S. Joseph Wright; Kai Zhu; Jess K. Zimmerman; Roman Zlotin; Magdalena Zywiec; James S. Clark
Lack of tree fecundity data across climatic gradients precludes the analysis of how seed supply contributes to global variation in forest regeneration and biotic interactions responsible for biodiversity. A global synthesis of raw seedproduction data shows a 250‐fold increase in seed abundance from cold‐dry to warm‐wet climates, driven primarily by a 100‐fold increase in seed production for a given tree size. The modest (three...
Global Ecology and Biogeography · 2020 · Vol. 29 · Issue 11 · Wiley
Aim Climate warming is increasing fire activity in many of Earth’s forested ecosystems. Because fire is a catalyst for change, investigation of post‐fire vegetation response is critical to understanding the potential for future conversions from forest to non‐forest vegetation types. We characterized the influences of climate and terrain on post‐fire tree regeneration and assessed how these biophysical factors might shape futur...
Ecology · 2018 · Vol. 99 · Issue 3 · Wiley
In the absence of broad‐scale disturbance, many temperate coniferous forests experience successful seedling establishment only when abundant seed production coincides with favorable climate. Identifying the frequency of past establishment events and the climate conditions favorable for seedling establishment is essential to understanding how climate warming could affect the frequency of future tree establishment events and the...