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Continental Contrasts in Climate Extremes That Control Tree Fecundity

James S. Clark; Robert Andrus; Margarita Arianoutsou; Davide Ascoli; Yves Bergeron; Michal Bogdziewicz; Thomas Boivin; Raul Bonal; Thomas Caignard; Maxime Cailleret; Rafael Calama; J. Julio Camarero; Francesco Chianucci; Emil Cienciala; Benoit Courbaud; Sylvain Delzon; Michael C. Dietze; Josep‐Maria Espelta; Bruno Fady; Nikolaos M. Fyllas; Gregory S. Gilbert; Georg Gratzer; Arthur Guignabert; Andrew Hacket‐Pain; Arndt Hampe; Mick E. Hanley; Janneke HilleRisLambers; Jan Holik; Kazuhiko Hoshizaki; Miao Hu; Inés Ibáñez; Fatih Işık; Lauren Jenkins; Jill F. Johnstone; Valentin Journe; Alper K. Kadıoğlu; İrem S. Kızılaslan; Johannes M. H. Knops; Richard K. Kobe; Nesibe Köse; Eylül U. Külah; Georges Kunstler; Jalene M. LaMontagne; Mateusz Ledwon; Aleksi Lehtonen; Verónica Loewe‐Muñoz; James A. Lutz; Anders Mårell; Kira Meyer; Emily Moran; Renzo Motta; Jonathan A. Myers; Thomas A. Nagel; Ignacio M. Pérez‐Ramos; Łukasz Piechnik; Tomasz Podgórski; Renata Poulton‐Kamakura; Tong Qiu; Miranda D. Redmond; Chantal D. Reid; Kyle C. Rodman; Francisco Rodriguez‐Sánchez; Pavel Šamonil; Vladimir Seben; Barbara Seget; Shubhi Sharma; Jaroslaw Socha; Michael A. Steele; Jacob N. Straub; Samantha Sutton; Peter A. Thomas; Giorgio Vacchiano; Marie‐Claude Venner; Samuel Venner; Miguel A. Zavala; Shiqi Zheng; Magdalena Żywiec
Global Change Biology · Vol. 32, Issue 2 · 2026

Abstract

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 are happening globally is unknown for lack of tree fecundity estimates in forests. Tolerance of climate extremes could depend on past exposure but constrained by phylogenetic conservatism. We report a continental scale analysis of climate extremes and forest fecundity across North America and Europe showing that responses to late freeze and drought are happening now. Species differences are not explained by the traits typically included in ecological studies and they are weakly associated with phylogeny. Late freeze, that is, freezing temperatures that follow the onset of flower development in spring, is shown to be “normal” in North America, but not Europe, potentially explaining failed seed production due to delayed onset and the resultant shorter growing period by North American transplants dating back at least to the 18th century. Drought has thus far had the greatest impacts in dry forested regions, but here too, species differences are not explained by traditional trait values. If responses have been buffered from drought and late freeze by past exposure, acclimation and local adaptation prove inadequate as extremes intensify.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2026-02-01
Publication Year2026
Volume32
Issue2
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.70738
SubjectConservation Science

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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