TY - JOUR
T1 - High Densities of Large Herbivores Rapidly Disrupt Ecosystem Integrity
AU - Isla, Jorge
AU - Serrano, Emmanuel
AU - Calleja, Juan A.
AU - Hernández-Castellano, Carlos
AU - Alcalá-Herrera, Rafael
AU - Albanell, Elena
AU - Alonso, Carlos
AU - Baraza, Elena
AU - Brolly, Matthew
AU - Burnside, Niall
AU - Burón-Ugarte, Ana
AU - Capó, Miquel
AU - Cardells, Jesús
AU - Carvalho, João
AU - Cuerdo, Macarena
AU - del Olmo, David G.
AU - Espadaler, Xavier
AU - Filella, Iolanda
AU - Fuentes-Moyano, Laura
AU - Gambra, Daniel
AU - Gómez, Alba
AU - Krumins, Jennifer A.
AU - Lavín-González, Santiago
AU - Lizana, Victor
AU - López-Sánchez, Aida
AU - Martínez-Jauregui, María
AU - Martínez-Torres, Helena
AU - Parra-Quesada, Elena
AU - Peláez, Marta
AU - Peñuelas, Josep
AU - Rello, Carmen
AU - Renedo, Jesús
AU - Rodríguez-Vigal, Carlos
AU - Rossa, Mariana
AU - Miguel, Alfonso San
AU - Torres-Blas, Irene
AU - Valladares-Pérez, Daycy
AU - Wenzel-Vergas, José C.
AU - Perea, Ramón
N1 - Publisher Copyright:
© 2026 The Author(s). Global Change Biology published by John Wiley & Sons Ltd.
PY - 2026/6
Y1 - 2026/6
N2 - Human-induced high densities of large wild herbivores may pose a threat to natural ecosystems, modifying biodiversity and ecosystem functioning. Although the negative impacts on individual taxa and processes are well documented, a comprehensive understanding of how ecosystem integrity responds to high herbivore densities remains limited. This study addresses this gap through an extensive herbivore-density manipulation experiment conducted in two Mediterranean woodlands. We established two scenarios of high red deer (Cervus elaphus) density, representative of some protected areas (~30 individuals·km2) and intensively managed hunting estates (~90 individuals·km2). We monitored 38 metrics encompassing a broad spectrum of biodiversity and functional responses to synthesize the short-term impacts of high herbivore densities. We revealed an overall 13% decline in ecosystem integrity after one year of exposure to high herbivore densities, with particularly widespread impacts on functional responses and detrimental effects on biodiversity components. We detected rapid declines in plant diversity and a positive response of epigeic invertebrate orders. Conversely, ants (analyzed separately), birds, and small mammals remained mostly unaffected. Functional responses were consistently impaired, including declines in plant regeneration and physiological performance, simplified pollination networks, degraded soil structure, and increased disease vectors. These findings show that human-induced high herbivore densities rapidly create conditions that disrupt ecosystem integrity, reveal early signs of ecological degradation, and underscore the urgent need for population regulation.
AB - Human-induced high densities of large wild herbivores may pose a threat to natural ecosystems, modifying biodiversity and ecosystem functioning. Although the negative impacts on individual taxa and processes are well documented, a comprehensive understanding of how ecosystem integrity responds to high herbivore densities remains limited. This study addresses this gap through an extensive herbivore-density manipulation experiment conducted in two Mediterranean woodlands. We established two scenarios of high red deer (Cervus elaphus) density, representative of some protected areas (~30 individuals·km2) and intensively managed hunting estates (~90 individuals·km2). We monitored 38 metrics encompassing a broad spectrum of biodiversity and functional responses to synthesize the short-term impacts of high herbivore densities. We revealed an overall 13% decline in ecosystem integrity after one year of exposure to high herbivore densities, with particularly widespread impacts on functional responses and detrimental effects on biodiversity components. We detected rapid declines in plant diversity and a positive response of epigeic invertebrate orders. Conversely, ants (analyzed separately), birds, and small mammals remained mostly unaffected. Functional responses were consistently impaired, including declines in plant regeneration and physiological performance, simplified pollination networks, degraded soil structure, and increased disease vectors. These findings show that human-induced high herbivore densities rapidly create conditions that disrupt ecosystem integrity, reveal early signs of ecological degradation, and underscore the urgent need for population regulation.
KW - biodiversity
KW - density manipulation
KW - ecosystem functioning
KW - Mediterranean woodland
KW - red deer (Cervus elaphus)
KW - short-term impacts
KW - ungulate overabundance
UR - https://www.scopus.com/pages/publications/105042562605
U2 - 10.1111/gcb.70964
DO - 10.1111/gcb.70964
M3 - Article
C2 - 42325053
AN - SCOPUS:105042562605
SN - 1354-1013
VL - 32
JO - Global Change Biology
JF - Global Change Biology
IS - 6
M1 - e70964
ER -