Species- and Provenance-Specific Leaf Phenological Responses to Drought and Elevated Phosphorus in Fagus sylvatica and Quercus petraea

水青冈 无梗花栎 物候学 出处 植物 壳斗科 生物 山毛榉 化学 古生物学 有机化学
作者
Marko Bačurin,Krunoslav Sever,Ida Katičić Bogdan,Saša Bogdan
出处
期刊:Forests [Multidisciplinary Digital Publishing Institute]
卷期号:16 (9): 1402-1402
标识
DOI:10.3390/f16091402
摘要

Leaf phenology is a crucial functional trait in temperate forest trees that integrates environmental signals and reflects species’ adaptive capacity to stress. This study examined how moderate drought and elevated phosphorus availability, alone and in combination, affect the spring and autumn phenology of juvenile Fagus sylvatica and Quercus petraea saplings from two climatically distinct Croatian provenances. In a common garden experiment, saplings were subjected to four treatments involving drought and phosphorus addition. Phenological stages were scored using standardized ordinal scales across two growing seasons. Results revealed that phosphorus consistently advanced autumn leaf senescence in both species, independent of drought, while drought effects were species- and provenance-specific. Spring phenology was more sensitive to drought: beech from the drier provenance advanced budburst, suggesting an escape strategy, whereas oak delayed leaf-out under the same conditions. Notably, combined drought and phosphorus treatments often neutralized individual effects, indicating physiological compensation. Provenance-level differences highlighted contrasting strategies—phenotypic plasticity versus stress tolerance—under multi-stressor conditions. These findings underscore the dominant role of phosphorus in regulating phenology and the complex, non-additive nature of drought–nutrient interactions, emphasizing the need for integrative approaches in predicting phenological responses under climate change.
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