TY - JOUR
T1 - Global functional shifts in trees driven by alien naturalization and native extinction
AU - Guo, Wen Yong
AU - Serra-Diaz, Josep M.
AU - Guo, Kun
AU - Boonman, Coline C.F.
AU - Schrodt, Franziska
AU - Maitner, Brian S.
AU - Merow, Cory
AU - Violle, Cyrille
AU - Anand, Madhur
AU - Bruun, Hans Henrik K.
AU - Byun, Chaeho
AU - Catford, Jane A.
AU - Cerabolini, Bruno E.L.
AU - Chacón-Madrigal, Eduardo
AU - Ciccarelli, Daniela
AU - Dang-Le, Anh Tuan
AU - Dias, Arildo S.
AU - Giroldo, Aelton B.
AU - Gutiérrez, Alvaro G.
AU - Jansen, Steven
AU - Kattge, Jens
AU - Kindt, Roeland
AU - Klein, Tamir
AU - Kramer, Koen
AU - Lusk, Christopher H.
AU - Martin, Adam R.
AU - Michaletz, Sean T.
AU - Minden, Vanessa
AU - Mori, Akira S.
AU - Niinemets, Ülo
AU - Onoda, Yusuke
AU - Peñuelas, Josep
AU - Pisek, Jan
AU - Robroek, Bjorn J.M.
AU - Schamp, Brandon
AU - Soudzilovskaia, Nadejda A.
AU - Thiffault, Nelson
AU - van der Plas, Fons
AU - Enquist, Brian J.
AU - Svenning, Jens Christian
N1 - Publisher Copyright:
© The Author(s), under exclusive licence to Springer Nature Limited 2026.
PY - 2026/2
Y1 - 2026/2
N2 - Human activities are driving simultaneous native extinctions and alien naturalizations, reshaping global tree diversity with major implications for ecosystem structure and function. Here we analysed functional traits and environmental niches of 31,001 tree species worldwide, comparing naturalized, threatened and non-threatened species to assess current patterns and project future shifts under intensified extinction and naturalization. Future tree-rich ecosystems are projected to become increasingly dominated by fast-growing, high-resource-use species with acquisitive traits, while slow-growing, conservative species face greater extinction risk. Although group means along the main functional axes do not differ significantly, naturalized species occupy broader functional and environmental spaces and thrive in colder and more variable climates, whereas threatened species are more specialized to warm, stable and nutrient-rich environments, with non-threatened species intermediate. Projected naturalizations expand local functional diversity, but their acquisitive strategies could reduce long-term ecosystem stability, while extinctions cause pronounced contractions of functional and environmental trait space, especially in climatically variable regions. Overall, our findings reveal an accelerating global shift towards faster-growing tree communities, with likely consequences for carbon storage and biodiversity, underscoring the need to safeguard slow-growing species and limit the dominance of acquisitive trees.
AB - Human activities are driving simultaneous native extinctions and alien naturalizations, reshaping global tree diversity with major implications for ecosystem structure and function. Here we analysed functional traits and environmental niches of 31,001 tree species worldwide, comparing naturalized, threatened and non-threatened species to assess current patterns and project future shifts under intensified extinction and naturalization. Future tree-rich ecosystems are projected to become increasingly dominated by fast-growing, high-resource-use species with acquisitive traits, while slow-growing, conservative species face greater extinction risk. Although group means along the main functional axes do not differ significantly, naturalized species occupy broader functional and environmental spaces and thrive in colder and more variable climates, whereas threatened species are more specialized to warm, stable and nutrient-rich environments, with non-threatened species intermediate. Projected naturalizations expand local functional diversity, but their acquisitive strategies could reduce long-term ecosystem stability, while extinctions cause pronounced contractions of functional and environmental trait space, especially in climatically variable regions. Overall, our findings reveal an accelerating global shift towards faster-growing tree communities, with likely consequences for carbon storage and biodiversity, underscoring the need to safeguard slow-growing species and limit the dominance of acquisitive trees.
UR - https://www.scopus.com/pages/publications/105030953568
U2 - 10.1038/s41477-025-02207-2
DO - 10.1038/s41477-025-02207-2
M3 - Article
C2 - 41606080
AN - SCOPUS:105030953568
SN - 2055-026X
VL - 12
SP - 308
EP - 318
JO - Nature Plants
JF - Nature Plants
IS - 2
ER -