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  3. Impact of summer defoliation and winter-spring warming on pre-spring carbon availability and spring phenology in sessile oak and Scots pine saplings.

Impact of summer defoliation and winter-spring warming on pre-spring carbon availability and spring phenology in sessile oak and Scots pine saplings.

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DOI
10.48620/92399
Publisher DOI
10.1093/treephys/tpaf144
PubMed ID
41206498
Abstract
Seasonal climate warming affects temperate plant phenology differently. Early winter warming can delay dormancy release and budburst due to insufficient chilling, while late winter or spring warming advances budburst. Additionally, the influence of pre-spring non-structural carbohydrate (NSC) availability on leaf phenology remains poorly understood. We explored the effects of previous late-summer defoliation and winter-spring warming on NSC dynamics and spring leaf phenology in two species: deciduous sessile oak with low chilling sensitivity and evergreen Scots pine with intermediate chilling sensitivity. We observed species-specific responses of leaf phenology to warming and defoliation. Winter warming delayed leaf unfolding in pine but not in oak, likely reflecting the greater chilling requirement of the pine. Defoliation significantly reduced pre-spring NSC levels in twigs and roots of both species, and led to earlier needle emergence in pine, with no impact on oak's leaf out date. Our findings indicate a dual dependency of pine leaf unfolding on temperature and internal carbon reserves, suggesting that defoliation, e.g., through herbivory or diseases, affects the following year's spring phenology and leaf growth in evergreen species but not in deciduous trees. These findings are important for understanding the adaptive strategies of different plant functional types under uneven warming conditions.
Date Issued
2026-01-08
Publication Type
Article
Subject(s)
500 Science > 580 Plants (Botany)
Subjects
asymmetric warming
•
chilling
•
forcing
•
leaf removal
•
non-structural carbohydrates
•
spring leaf phenology
Language(s)
en
Author(s)
Yang, Yue
Vitasse, Yann
Zohner, Constantin M
Wang, Lei  
Zhang, Yanli  
Wang, Ao
Gao, Decai
Zong, Shengwei
Du, Haibo
Wu, Zhengfang
He, Hong S
Hu, Zhongmin
Li, Mai-He
Additional Credits
Oeschger Centre for Climate Change Research (OCCR)  
Journal
Tree Physiology
Publisher
Oxford University Press
ISSN
1758-4469
0829-318X
Access(Rights)
open.access
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