Multi-organ stoichiometry of C:N:P reflects shifts in plant adaptation strategies during secondary succession in temperate forests

Abstract Secondary succession following anthropogenic disturbance is widespread in temperate mixed conifer–broadleaf forests. The associated shifts in plant nutrient allocation strategies are a crucial component of secondary succession and may provide useful insights for ecological restoration, but they remain poorly understood. Here, we applied a 100-year chronosequence following historical selective logging across seven successional stages in northeastern China to measure carbon (C), nitrogen (N), and phosphorus (P) concentrations in the plants’ leaves, stems, and roots across 391 species-site combinations. During the early to mid-stages of secondary succession, C:N ratios declined, whereas N:P and C:P ratios increased. In the late successional stage, C:N:P tended to be stable, thereby suggesting a shift toward more conservative plant growth strategies. Moreover, inter-organ N allocation relationships shifted from near-isometric to allometric patterns, indicating enhanced stoichiometric differentiation among organs and providing stoichiometric evidence consistent with the predictions of our proposed Dynamic Coordination–Specialization hypothesis. Throughout the successional trajectory, phylogenetic effects consistently outweighed soil and other factors, consequently driving organ-specific shifts in stoichiometry. Our findings highlight shifts in plant adaptive strategies during secondary succession from the perspective of ecological stoichiometry and provide useful insights for forest restoration and nutrient management in temperate forests.

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Publication Details

Journal
Journal of Plant Ecology
Published
2026-09-17
DOI
https://doi.org/10.1093/jpe/rtag229
Primary Topic
Ecology and Vegetation Dynamics Studies
Type
article
Field-Weighted Citation Impact
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article

Multi-organ stoichiometry of C:N:P reflects shifts in plant adaptation strategies during secondary succession in temperate forests

Nianpeng He, Lili Li, Jiahui Zhang, Jihua Hou et al.
Journal of Plant Ecology
Ecology and Vegetation Dynamics Studies
article

Multi-organ stoichiometry of C:N:P reflects shifts in plant adaptation strategies during secondary succession in temperate forests

Nianpeng He, Lili Li, Jiahui Zhang, Jihua Hou, Chaolian Jiao
article en

Abstract

Abstract Secondary succession following anthropogenic disturbance is widespread in temperate mixed conifer–broadleaf forests. The associated shifts in plant nutrient allocation strategies are a crucial component of secondary succession and may provide useful insights for ecological restoration, but they remain poorly understood. Here, we applied a 100-year chronosequence following historical selective logging across seven successional stages in northeastern China to measure carbon (C), nitrogen (N), and phosphorus (P) concentrations in the plants’ leaves, stems, and roots across 391 species-site combinations. During the early to mid-stages of secondary succession, C:N ratios declined, whereas N:P and C:P ratios increased. In the late successional stage, C:N:P tended to be stable, thereby suggesting a shift toward more conservative plant growth strategies. Moreover, inter-organ N allocation relationships shifted from near-isometric to allometric patterns, indicating enhanced stoichiometric differentiation among organs and providing stoichiometric evidence consistent with the predictions of our proposed Dynamic Coordination–Specialization hypothesis. Throughout the successional trajectory, phylogenetic effects consistently outweighed soil and other factors, consequently driving organ-specific shifts in stoichiometry. Our findings highlight shifts in plant adaptive strategies during secondary succession from the perspective of ecological stoichiometry and provide useful insights for forest restoration and nutrient management in temperate forests.

Journal of Plant Ecology
Beijing Forestry University (CN), Xinjiang Institute of Ecology and Geography (CN), Northeast Forestry University (CN)
Life in Land
Openalex Percentile: Top 8%
Ecology and Vegetation Dynamics Studies
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