植物生态学报 ›› 2026, Vol. 50 ›› Issue (预发表): 0-.DOI: 10.17521/cjpe.2025.0116

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不同龄级黑沙蒿对干旱胁迫的光合生理及其非结构性碳分配响应策略

张杰, 李旭, 包岩峰, 王春媛, 张富崇, 于明含   

  1. 北京林业大学水土保持学院, 100083 中国
  • 收稿日期:2025-04-01 修回日期:2025-07-30 接受日期:2025-08-19 出版日期:2026-05-20 发布日期:2026-07-21

Photosynthetic physiology and non-structural carbohydrates allocation responses of Artemisia ordosica across age classes to drought stress

ZHANG Jie, LI Xu, BAO Yan-Feng, WANG Yuan Chun, Zhang Fuchong, YU Ming-Han   

  1. , School of Soil and Water Conservation, Beijing Forestry University 100083, China
  • Received:2025-04-01 Revised:2025-07-30 Accepted:2025-08-19 Online:2026-05-20 Published:2026-07-21

摘要: 探究不同龄级黑沙蒿在干旱胁迫下非结构性碳(NSC)分配格局与光合特性的互作机制,不仅能够揭示植物个体发育过程中的抗旱策略演变规律,更可为预测气候变化背景下荒漠植被动态及制定差异化生态恢复策略提供理论支撑。以荒漠地区典型沙生植物黑沙蒿(Artemisia ordosica)为研究对象,通过野外降水控制试验,设置4个降雨梯度模拟出黑沙蒿正常(自然降水)、轻度干旱(降水量减少30%)、中度干旱(降水量减少50%)、极端干旱(降水量减少70%)的降水环境;以形态学特征为依据对黑沙蒿龄级进行划分,并对不同龄级黑沙蒿(低龄级、中龄级、高龄级)光合相关参数、枝叶非结构性碳含量进行测量,结果表明:(1)轻度干旱并未影响黑沙蒿光合碳同化效率,中度和极端干旱显著抑制光合碳同化效率;(2)黑沙蒿通过非结构性碳水化合物(NSC)的器官特异性分配动态弥补光合损失。枝条通过可溶性糖的显著积累和淀粉消耗快速响应轻度干旱胁迫;中重度干旱下,枝条淀粉显著回升,叶片可溶性糖持续累积,通过淀粉水解维持渗透调节;(3)结构方程模型(SEM)表明,干旱对枝叶NSC的直接正向效应(枝条:β=0.78;叶片:β=0.90)显著抵消光合抑制的间接损耗(枝条:β=-0.87;叶片:β=-0.27),揭示了植物在干旱胁迫下通过非光合途径主动调控碳分配的生存策略。

关键词: 黑沙蒿(Artemisia ordosica), 龄级, 干旱胁迫, 非结构性碳, 光合特性

Abstract: Aims Exploring the interactions between non-structural carbohydrates (NSC) allocation patterns and photosynthetic properties of different age classes of Artemisia ordosica under drought stress cannot only reveal the evolution of drought-resistant strategies during individual plant development but also provide theoretical support for predicting the dynamics of desert vegetation and formulating differentiated ecological restoration strategies in the context of climate change. Methods A. ordosica, a typical sandy plant in desert areas, was used as the research object. Four rainfall gradients were set up through a field precipitation control experiment to simulate the normal (natural precipitation); mild drought (30% rainfall reduction); moderate drought (50% rainfall reduction); and extreme drought (70% rainfall reduction) conditions for A. ordosica. Based on its morphological characteristics, we classified the age classes of A. ordosica (low, medium, and high) and measured the photosynthesis-related parameters as well as the NSC content in leaves and twigs of plants from these different age classes. Important findings Our main results showed that: (1) Mild drought did not affect photosynthetic carbon assimilation in A. ordosica, while moderate and extreme drought significantly suppressed it. (2) A. ordosica dynamically replenishes photosynthetic losses through organ-specific partitioning of NSC. Twigs rapidly responded to mild drought stress through significant soluble sugar accumulation and starch depletion. During moderate to extreme drought conditions, twig starch reserves recovered substantially while leaf soluble sugars maintained accumulation, with osmotic regulation sustained through starch hydrolysis. (3) Structural equation modeling (SEM) analysis demonstrated that drought's direct positive effects on twig and leaf NSC (β=0.78 and 0.90, respectively) substantially counteracted the indirect photosynthetic inhibition effects (β=-0.87 and -0.27), revealing this species' survival strategy of actively modulating carbohydrates’ allocation through the non-photosynthetic pathways under drought stress.

Key words: Artemisia ordosica, age class, drought stress, non-structural carbohydrates, photosynthetic properties