Journal of Plant Ecology

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氮添加和干旱的个体作用及交互作用对陆生植物碳吸收和分配的影响

  

  • 收稿日期:2025-05-06 接受日期:2025-12-20

Individual and interactive effects of nitrogen addition and drought on carbon uptake and allocation in terrestrial plants

Chengqian Pan, Junhong Shu, Zhen Zhang, Qinning Jiang, Liehua Tie, Jie Wang, Honglang Duan, and Shengnan Ouyang*   

  1. Institute for Forest Resources and Environment of Guizhou, Guizhou Key Laboratory of Forest Cultivation in Plateau Mountain, College of Forestry, Guizhou University, Guiyang 550025, China
    *Correspondence: Shengnan Ouyang, Email:snouyang@gzu.edu.cn
  • Received:2025-05-06 Accepted:2025-12-20
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (32360259, 32460379, U24A20431) and Guizhou Provincial Science and Technology Projects (QKHZHYD[2024]044, ZK[2025]ZHONGDIAN070, ZK [2023]YIBAN110).

摘要: 干旱事件发生频率的增加与氮沉降的升高均会影响植物的碳利用过程,但二者的个体作用及交互作用如何影响植物碳吸收和分配过程尚不明确。通过对84篇已发表文章的1247个观测值进行meta分析,本研究评估了氮添加和干旱如何共同影响植物的光合作用、生物量分配和非结构性碳水化合物分配。结果表明,氮添加整体上增加了植物的净光合速率和生物量积累,但降低了整株植物的非结构性碳水化合物。相反,干旱整体上降低了净光合速率和生物量积累,但增加了整株植物的非结构性碳水化合物。氮添加显著增加了地上部分生物量的分配,而干旱显著降低了叶片生物量。尽管氮添加和干旱的交互作用对陆生植物的净光合速率、生物量分配和非结构性碳水化合物分配的影响不显著,但常绿阔叶植物的根系生物量、落叶阔叶植物的叶片生物量以及一年生草本植物的根冠比受两者交互作用的显著影响。综上所述,氮添加和干旱对陆生植物的碳吸收、生物量积累和非结构性碳水化合物具有相反的影响。氮添加和干旱对生物量分配的交互作用受植物功能型的影响。本研究提高了我们对多种环境变化下植物碳利用策略的理解。

关键词: 氮添加, 干旱, 碳分配, 非结构性碳水化合物, meta分析

Abstract: The increasing frequency of drought events and elevated nitrogen (N) deposition both affect plant carbon (C) utilization, but whether their individual and interactive effects promote, inhibit, or have no effect on C uptake and allocation remains unclear. We conducted a meta-analysis using 1247 observations from 84 published articles to assess how N addition and drought jointly affected plant photosynthesis, biomass allocation, and nonstructural carbohydrates (NSC) allocation. Our results showed that N addition overall increased plant net photosynthetic rate (Pn) and biomass accumulation, but decreased whole plant total NSC storage. Conversely, drought overall decreased Pn and biomass accumulation while increased whole plant total NSC storage. N addition significantly increased aboveground biomass allocation, whereas drought significantly reduced leaf biomass (LB). Although N addition and drought did not have significant interaction on Pn, biomass allocation, and NSC allocation in terrestrial plants, their interaction significantly increased the root biomass of evergreen broadleaf plants, the LB of deciduous broadleaf plants, and the root-to-shoot ratio of annual herbs. In conclusion, N addition and drought had opposite effects on C uptake, biomass accumulation, and NSC storage in terrestrial plants. The interaction of N addition and drought on biomass allocation was affected by plant functional types. This study enhances our understanding of plant C utilization strategies under multiple environmental changes.

Key words: nitrogen addition, drought, carbon allocation, non-structural carbohydrates, meta-analysis