TY - JOUR
T1 - Divergent Trends in Insect Disturbance Across Europe's Temperate and Boreal Forests
AU - Hlasny, Tomas
AU - Modlinger, Roman
AU - Gohli, Jostein
AU - Seidl, Rupert
AU - Krokene, Paal
AU - Bernardinelli, Iris
AU - Blaser, Simon
AU - Brazaitis, Gediminas
AU - Brazaityte, Gailene
AU - Brockerhoff, Eckehard G.
AU - Csoka, Gyorgy
AU - Dobor, Laura
AU - De Groot, Maarten
AU - Duduman, Mihai-leonard
AU - Faccoli, Massimo
AU - Georgieva, Margarita
AU - Georgiev, Georgi
AU - Grodzki, Wojciech
AU - Hartmann, Henrik
AU - Hirka, Aniko
AU - Hoch, Gernot
AU - Jablonski, Tomasz
AU - Jactel, Herve
AU - Jonsell, Mats
AU - Kolsek, Marija
AU - Melin, Markus
AU - Milanovic, Slobodan
AU - Netoiu, Constantin
AU - Nieberg, Mats
AU - Okland, Bjorn
AU - Pernek, Milan
AU - Perunova, Michaela
AU - Schafstall, Nick
AU - Schroeder, Martin
AU - Steyrer, Gottfried
AU - Vakula, Jozef
AU - Wohlgemuth, Thomas
AU - Ylioja, Tiina
AU - Liebhold, Andrew M.
PY - 2025
Y1 - 2025
N2 - Ongoing shifts in climate and land use have altered interactions between trees and insect herbivores, changing biotic disturbance regimes. However, as these changes are complex and vary across host species, insect taxa, and feeding guilds, they remain poorly understood. We compiled annual records of forest insect disturbance from 15 countries in temperate and boreal Europe, spanning the period from 2000 to 2022. The dataset comprises 1361 time series characterizing the dynamics of 50 herbivorous insects. We used this dataset to test whether insect disturbance has systematically changed during the 23-year period across host trees and feeding guilds, whether it varies along latitudinal and climatic gradients, and whether synchrony exists among species in the same guild or among species sharing the same host. Since 2000, borer disturbance was predominantly concentrated on gymnosperms, while defoliators impacted gymnosperms and angiosperms more evenly. While 85.8% of gymnosperm disturbance was inflicted by a single species, Ips typographus, the majority of disturbances to angiosperms were caused by six different species. Borer impact on gymnosperms has increased in the 21st century, while defoliator impact has decreased across both clades. In contrast to diverging temporal trends, disturbance was consistently greater in warmer and drier conditions across feeding guilds and host types. We identified significant synchrony in insect disturbance within host types and feeding guilds but not between these groups, suggesting shared drivers within guilds and host types. Increasing insect disturbance to gymnosperms may catalyze adaptive transformations in Europe's forests, promoting a shift from historical conifer-dominated management to broadleaved trees, which are less affected by insect herbivores. Our findings reveal a diversity of trends in insect herbivory, underscoring the need to strengthen monitoring and research in order to better understand underlying mechanisms and identify emerging threats that may not be apparent in currently available data.
AB - Ongoing shifts in climate and land use have altered interactions between trees and insect herbivores, changing biotic disturbance regimes. However, as these changes are complex and vary across host species, insect taxa, and feeding guilds, they remain poorly understood. We compiled annual records of forest insect disturbance from 15 countries in temperate and boreal Europe, spanning the period from 2000 to 2022. The dataset comprises 1361 time series characterizing the dynamics of 50 herbivorous insects. We used this dataset to test whether insect disturbance has systematically changed during the 23-year period across host trees and feeding guilds, whether it varies along latitudinal and climatic gradients, and whether synchrony exists among species in the same guild or among species sharing the same host. Since 2000, borer disturbance was predominantly concentrated on gymnosperms, while defoliators impacted gymnosperms and angiosperms more evenly. While 85.8% of gymnosperm disturbance was inflicted by a single species, Ips typographus, the majority of disturbances to angiosperms were caused by six different species. Borer impact on gymnosperms has increased in the 21st century, while defoliator impact has decreased across both clades. In contrast to diverging temporal trends, disturbance was consistently greater in warmer and drier conditions across feeding guilds and host types. We identified significant synchrony in insect disturbance within host types and feeding guilds but not between these groups, suggesting shared drivers within guilds and host types. Increasing insect disturbance to gymnosperms may catalyze adaptive transformations in Europe's forests, promoting a shift from historical conifer-dominated management to broadleaved trees, which are less affected by insect herbivores. Our findings reveal a diversity of trends in insect herbivory, underscoring the need to strengthen monitoring and research in order to better understand underlying mechanisms and identify emerging threats that may not be apparent in currently available data.
KW - climate change
KW - ecosystem adaptation
KW - forest disturbance
KW - forest insect herbivores
KW - host tree types
KW - insect feeding guilds
KW - climate change
KW - ecosystem adaptation
KW - forest disturbance
KW - forest insect herbivores
KW - host tree types
KW - insect feeding guilds
UR - https://res.slu.se/id/publ/144569
U2 - 10.1111/gcb.70580
DO - 10.1111/gcb.70580
M3 - Journal article
C2 - 41158024
SN - 1354-1013
VL - 31
JO - Global Change Biology
JF - Global Change Biology
IS - 11
M1 - e70580
ER -