TY - JOUR
T1 - Species-specific responses of leaf herbivory and defenses along a latitudinal gradient
AU - Feng, Ruliang
AU - Jia, Shihong
AU - Hao, Zhanqing
AU - Moreira, Xoaquín
N1 - Publisher Copyright:
© 2026 The Ecological Society of America.
PY - 2026/5
Y1 - 2026/5
N2 - Latitudinal variation in biotic interactions has long been hypothesized to shape plant trait evolution, with stronger herbivory at lower latitudes predicted to drive increased plant defenses. Yet, recent studies reveal inconsistent patterns, suggesting that context dependence and methodological limitations constrain broad inference. Two key issues may underlie these discrepancies: most research examines single defensive traits in isolation rather than integrated defense syndromes, and studies often focus on single species within restricted geographic ranges. To address these gaps, we tested for latitudinal variation in insect herbivory and multiple leaf traits across four tree species distributed along a 21.4° gradient in China, spanning tropical to temperate regions. We sampled 7–10 populations per species across nearly their entire climatic ranges. Our results show that latitudinal patterns in herbivory and defenses are highly species-specific. In Prunus persica and Prunus salicina, herbivory followed a unimodal gradient, peaking at mid-latitudes, while Malus halliana and Malus micromalus showed no significant latitudinal trends. Leaf physical traits varied with latitude: leaf area increased with latitude in P. salicina and M. halliana but decreased in M. × micromalus, and leaf thickness declined at higher latitudes only in M. × micromalus. Chemical traits, including C:N ratio, tannins, and flavonoids, generally declined toward higher latitudes, though patterns were species-dependent. Importantly, herbivory was mediated by interactions between latitude and traits such as flavonoid content and specific leaf area. Our findings highlight that latitudinal effects on herbivory emerge through species-specific trait variation, underscoring the need for multispecies, trait-based approaches to understand plant–herbivore dynamics at broad scales.
AB - Latitudinal variation in biotic interactions has long been hypothesized to shape plant trait evolution, with stronger herbivory at lower latitudes predicted to drive increased plant defenses. Yet, recent studies reveal inconsistent patterns, suggesting that context dependence and methodological limitations constrain broad inference. Two key issues may underlie these discrepancies: most research examines single defensive traits in isolation rather than integrated defense syndromes, and studies often focus on single species within restricted geographic ranges. To address these gaps, we tested for latitudinal variation in insect herbivory and multiple leaf traits across four tree species distributed along a 21.4° gradient in China, spanning tropical to temperate regions. We sampled 7–10 populations per species across nearly their entire climatic ranges. Our results show that latitudinal patterns in herbivory and defenses are highly species-specific. In Prunus persica and Prunus salicina, herbivory followed a unimodal gradient, peaking at mid-latitudes, while Malus halliana and Malus micromalus showed no significant latitudinal trends. Leaf physical traits varied with latitude: leaf area increased with latitude in P. salicina and M. halliana but decreased in M. × micromalus, and leaf thickness declined at higher latitudes only in M. × micromalus. Chemical traits, including C:N ratio, tannins, and flavonoids, generally declined toward higher latitudes, though patterns were species-dependent. Importantly, herbivory was mediated by interactions between latitude and traits such as flavonoid content and specific leaf area. Our findings highlight that latitudinal effects on herbivory emerge through species-specific trait variation, underscoring the need for multispecies, trait-based approaches to understand plant–herbivore dynamics at broad scales.
KW - defense syndromes
KW - insect herbivory
KW - latitudinal gradients
KW - leaf defensive traits
KW - plant–herbivore interactions
KW - species-specific responses
UR - https://www.scopus.com/pages/publications/105039793848
U2 - 10.1002/ecy.70403
DO - 10.1002/ecy.70403
M3 - 文章
C2 - 42170797
AN - SCOPUS:105039793848
SN - 0012-9658
VL - 107
JO - Ecology
JF - Ecology
IS - 5
M1 - e70403
ER -