Contrasting thermophilization among forests, grasslands and alpine summits
Kai Yue · Pieter Vangansbeke · Isla H. Myers-Smith · Donald M. Waller · Kris Verheyen · Markus Bernhardt-Römermann · Lander Baeten · Ingmar R. Staude · Anne D. Bjorkman · Radim Hédl · Christopher Andrews · Elena Barni · Thomas Becker · Antoine Becker-Scarpitta · José-Luis Benito-Alonso · Jonathan Bennie · Imre Berki · Volker Blüml · Jörg Brunet · James M. Bullock · Hans Van Calster · Michele Carbognani · Markéta Chudomelová · Déborah Closset-Kopp · Pavel Dan Turtureanu · Gergana N. Daskalova · Guillaume Decocq · Jan Dick · Martin Diekmann · Thomas Dirnböck · Tomasz Durak · Ove Eriksson · Brigitta Erschbamer · Bente Jessen Graae · Thilo Heinken · Martin Hermy · Peter Horchler · Ute Jandt · Bogdan Jaroszewicz · Róbert Kanka · Jozef Kollár · Martin Kopecký · Thomas Kudernatsch · Andrea Lamprecht · Jonathan Lenoir · Martin Macek · Marek Malicki · František Máliš · Ottar Michelsen · Fraser Mitchell · Tobias Naaf · Thomas A. Nagel · Miles Newman · Adrian C. Newton · Lena Nicklas · Ludovica Oddi · Anna Orczewska · Simone Orsenigo · Adrienne Ortmann-Ajkai · Jan den Ouden · Harald Pauli · George Peterken · Petr Petřík · Remigiusz Pielech · Mihai Puşcaş · Christophe Randin · Kamila Reczyńska · Christian Rixen · Fride Høistad Schei · Wolfgang Schmidt · Jan Šebesta · Alina Stachurska-Swakon · Tibor Standovár · Krzysztof Świerkosz · Balázs Teleki · Jean-Paul Theurillat · Tudor-Mihai Ursu · Thomas Vanneste · Mark Vellend · Philippine Vergeer · Ondřej Vild · Luis Villar · Pascal Vittoz · Manuela Winkler · Sonja Wipf · Fuzhong Wu · Shengmin Zhang · Pieter De Frenne
期刊Nature
类型Article
发表2026-03-18 (online)
卷期页653(8115): 765-769
收录2026-10-04
被浏览…
关键词thermophilizationglobal warmingvegetation changeunderstory vegetationgrasslandfloristic compositioncold-adapted specieslong-term vegetation monitoring
标签—
气候变暖正在改变生物群落,喜温物种占据优势,而耐寒物种则逐渐减少,这一过程被称为嗜热化。由于生物多样性的响应通常滞后于气候变暖,全球许多生态系统正在累积气候债务。尽管我们预期嗜热化和气候债务会因生境而异,但目前缺乏跨生态系统的标准化量化方法。本文分析了欧洲各地森林、草地和高山山顶6067个植被样地长达数十年(12-78年)的复查数据。结果表明,森林林下层和草地植物群落经历了正向嗜热化,但与零值无显著差异。相比之下,高山山顶植被表现出更强(高达五倍)且显著的嗜热化。嗜热化主要由草地中喜温物种的增加、高山山顶中耐寒物种的减少以及森林中两者的共同作用驱动。森林和高山山顶积累了显著的气候债务,而草原则较少,且这些债务与宏观气候温度变化呈正相关。我们的研究结果揭示了不同生态系统中植物嗜热化轨迹的差异以及气候债务的增加。此外,我们重点阐述了某些植物群落比其他群落更能适应气候变化的机制,并为预测在气候变暖加速的背景下植物群落的未来变化提供了基础。

@article{yue2026,
author = {Kai Yue and Pieter Vangansbeke and Isla H. Myers-Smith and Donald M. Waller and Kris Verheyen and Markus Bernhardt-Römermann and Lander Baeten and Ingmar R. Staude and Anne D. Bjorkman and Radim Hédl and Christopher Andrews and Elena Barni and Thomas Becker and Antoine Becker-Scarpitta and José-Luis Benito-Alonso and Jonathan Bennie and Imre Berki and Volker Blüml and Jörg Brunet and James M. Bullock and Hans Van Calster and Michele Carbognani and Markéta Chudomelová and Déborah Closset-Kopp and Pavel Dan Turtureanu and Gergana N. Daskalova and Guillaume Decocq and Jan Dick and Martin Diekmann and Thomas Dirnböck and Tomasz Durak and Ove Eriksson and Brigitta Erschbamer and Bente Jessen Graae and Thilo Heinken and Martin Hermy and Peter Horchler and Ute Jandt and Bogdan Jaroszewicz and Róbert Kanka and Jozef Kollár and Martin Kopecký and Thomas Kudernatsch and Andrea Lamprecht and Jonathan Lenoir and Martin Macek and Marek Malicki and František Máliš and Ottar Michelsen and Fraser Mitchell and Tobias Naaf and Thomas A. Nagel and Miles Newman and Adrian C. Newton and Lena Nicklas and Ludovica Oddi and Anna Orczewska and Simone Orsenigo and Adrienne Ortmann-Ajkai and Jan den Ouden and Harald Pauli and George Peterken and Petr Petřík and Remigiusz Pielech and Mihai Puşcaş and Christophe Randin and Kamila Reczyńska and Christian Rixen and Fride Høistad Schei and Wolfgang Schmidt and Jan Šebesta and Alina Stachurska-Swakon and Tibor Standovár and Krzysztof Świerkosz and Balázs Teleki and Jean-Paul Theurillat and Tudor-Mihai Ursu and Thomas Vanneste and Mark Vellend and Philippine Vergeer and Ondřej Vild and Luis Villar and Pascal Vittoz and Manuela Winkler and Sonja Wipf and Fuzhong Wu and Shengmin Zhang and Pieter De Frenne},
title = {Contrasting thermophilization among forests, grasslands and alpine summits},
journal = {Nature},
year = {2026},
volume = {653},
number = {8115},
pages = {765-769},
doi = {10.1038/s41586-025-09622-7},
publisher = {Springer Science and Business Media LLC},
}· END ·