J Plant Ecol ›› 2026, Vol. 19 ›› Issue (4): rtag006.DOI: 10.1093/jpe/rtag006

• Research Article •     Next Articles

Effects of water-nitrogen interaction on resource use efficiency and adaptive strategies in the key growth period of Carex schmidtii

Qiu-Ying Ma, Li Wu, Hai-Bo Jiang, Tao Yang, Hong-Feng Bian, Hai-Tao Wu, Chun-Guang He   

  1. 1 Key Laboratory of Wetland Ecology and Vegetation Restoration, Ministry of Ecology and Environment, Northeast Normal University, Changchun 130117, China;
    2 Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun 130102, China
    *Corresponding authors. E-mails: wuli774@nenu.edu.cn (L.W.); he-cg@nenu.edu.cn (C.-G.H.)
  • Received:2025-02-26 Revised:2025-04-06 Accepted:2026-01-27 Published:2026-08-01
  • Supported by:
    This work was supported by the National Key Research and Development Program of China (grant number 2022YFF1300900) and by the Department of Science and Technology of Jilin Province through the Key Project of Jilin Province Science and Technology Development Plan (grant number 20220203003SF).

水氮交互作用对苔草关键生长期资源利用效率及适应策略的影响

Abstract: Climate change and intensified agricultural activities are altering hydrological regimes and nitrogen inputs in wetland ecosystems, yet the mechanisms by which dominant wetland plants coordinate their responses to water-nitrogen interactions across growth stages remain insufficiently understood. This study investigated the dominant species, Carex schmidtii, utilizing a controlled experiment with three water levels (low water level, LW; control water level, W0; high water level, HW) and three nitrogen additions levels (no nitrogen addition, N0; low nitrogen addition, N1; high nitrogen addition, N2). Results revealed that C. schmidtii displayed pronounced stage-dependent plasticity to water-nitrogen interactions. Water availability emerged as the key factor determining growth and resource allocation, whereas nitrogen effects were strongly modulated by water conditions. During the vegetative growth stage, water limitation suppressed plant growth regardless of nitrogen addition, Under no nitrogen addition, plant height in the low water level treatment decreased by 22.16% relative to the control water level, and this growth inhibition persisted even under high nitrogen inputs, indicating that nitrogen could not compensate for water deficiency. At low water level, water use efficiency (WUE) and nitrogen use efficiency (NUE) reached the highest values and displayed a positive correlation, indicating efficient resource utilization. During the reproductive growth stage, nitrogen played a stronger role in promoting structural development and maintaining functional stability. Nitrogen additions alleviated NUE reduction under low water, whereas high water induced an escape response marked by reduced WUE (−29.10%) and elevated NUE (+119%). These findings highlight contrasting coordination strategies across growth stages and provide new insight into the adaptive mechanisms of dominant wetland plants under shifting hydrological and nutrient regimes.

Facing the altered water and nitrogen regimes in wetlands due to climate change and agricultural activities, current research still lacks an in-depth understanding of their interactive effects. There is an urgent need to clarify how wetland plants coordinate their morphological, physiological, and resource-use strategies under water-nitrogen interactions.

Key words: Carex schmidtii, water-nitrogen interactions, resource use efficiency, adaptive strategies, peatlands

摘要:
气候变化与农业活动正在改变湿地水文格局及氮输入水平,但水氮变化对湿地植物不同生长阶段资源利用及生长的影响仍不清楚。本研究基于控制试验,设置3个水位(低水位, LW;对照水位, W0;高水位, HW)与3个氮添加水平(不施氮, N0;低氮, N1;高氮, N2),探究了中国北方泥炭地典型植物苔草(Carex schmidtii)对模拟水氮变化的响应特征。结果表明,水分是决定苔草生长与资源分配的关键因素,而氮对苔草生长的影响则受到水分调控,且呈现明显的阶段性差异。具体而言,在营养生长阶段,水分下降显著抑制了植物生长。不施氮条件下,低水位处理株高较对照水位下降了22.16%,在高氮输入下这种生长抑制效应仍然存在,表明加氮无法缓解水分缺乏的抑制效应。水分利用效率(WUE)与氮素利用效率(NUE)均在低水位下达到峰值,且二者呈正相关关系,表明低水位条件下植物资源利用效率的协同提升。在生殖生长阶段,氮在促进结构发育和维持功能稳定方面的作用显著增强。氮添加能够缓解低水位条件下NUE的下降;而在高水位条件下,氮添加则降低WUE (−29.10%)而提高NUE(+119%)。本研究揭示了不同生长阶段苔草对水氮交互作用的差异化适应策略,为理解水位与营养条件变化下湿地优势植物的适应机制提供新见解。

关键词: 苔草(Carex schmidtii), 水氮交互, 资源利用效率, 适应策略, 泥炭地