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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1454-1462.doi: 10.13292/j.1000-4890.202605.035

• ·克隆植物的适应策略与生态功能·(专栏组织专家:钱建强、雒文涛、武 晶) • 上一篇    下一篇

致死干旱对大白杜鹃非结构性碳水化合物代谢动态的影响

徐歌1,李佳雯1,曾文汐1,晏梅静1*,董廷发2   

  1. 1西南野生动植物资源保护教育部重点实验室, 西华师范大学生命科学学院, 四川南充 637000; 2云南大学生态与环境学院, 植被结构功能与建造全国重点实验室, 云南省植物繁殖适应与进化生态学重点实验室, 昆明 650500)
  • 出版日期:2026-05-10 发布日期:2026-05-07

Effects of lethal drought on the metabolic dynamics of non-structural carbohydrates in Rhododendron decorum. 

XU Ge1, LI Jiawen1, ZENG Wenxi1, YAN Meijing1*, DONG Tingfa2   

  1. (1Key Laboratory of Southwest China Wildlife Resources Conservation (Ministry of Education), College of Life Sciences, China West Normal University, Nanchong 637000, Sichuan, China; 2State Key Laboratory of Vegetation Structure, Function and Construction (Veglab), Yunnan Key Laboratory of Plant Reproductive Adaptation and Evolutionary Ecology, School of Ecology and Environmental Science, Yunnan University, Kunming 650500, China).

  • Online:2026-05-10 Published:2026-05-07

摘要: 近年来,极端干旱气候事件诱发了全球性的森林大面积死亡,探究树木对致死干旱的响应机理已成为森林生态学的研究热点,但关于树木对致死干旱的响应机制的研究结果还不统一。本研究以我国西南亚高山地区广泛分布的大白杜鹃(Rhododendron decorum)幼苗为对象,分析非结构性碳水化合物(non-structural carbohydrate,NSC)、光合速率、呼吸速率及水分状况的动态特征对致死干旱的响应。结果显示:(1)在干旱加剧的过程中,叶的总NSC和可溶性糖含量(SS)表现出下降趋势,而根的这些性状表现出上升趋势,茎的这些性状表现出先上升后下降的趋势;叶、茎和根的淀粉的含量呈现波动状态。(2)致死干旱会改变NSC的分配格局,并优先分配NSC到根系。(3)随干旱加剧,叶片的生理性状(水势、相对含水量、净光合速率、气孔导度、蒸腾速率、暗呼吸速率等)呈现出先缓慢降低再急剧降低或缓慢降低-短暂回升-急剧下降的变化趋势。结果表明,干旱环境对植株体内的碳代谢(包括碳同化、呼吸)产生了明显的抑制,且叶片和根系的非结构性碳水化合物对致死干旱的响应存在权衡,反映碳资源向根系优先分配的策略。研究结果为解析杜鹃花植物响应极端干旱的生理机制提供了理论依据。


关键词: 大白杜鹃, 干旱胁迫, 碳平衡, 非结构性碳水化合物

Abstract: Extreme drought events have triggered widespread forest dieback globally, and thus the investigation of tree responses to lethal droughts has become a hot topic in forest ecology. However, research on the mechanisms of tree responses to lethal droughts is not yet consistent. Here, we examined seedlings of Rhododendron decorum, a widespread species in high-altitude regions of Southwest China, to quantify shifts in non-structural carbohydrates (NSC), photosynthesis, respiration, and water status under lethal drought. The results showed that: (1) During progressive drought intensification, total NSC and soluble sugar concentrations in leaves declined, whereas their concentrations in roots increased. Stem NSC and soluble sugars exhibited an initial increase and then a marked decrease, while starch concentration fluctuated in all organs. (2) Lethal drought changed the allocation pattern of total NSC in the leaves and roots, with NSC preferentially allocated to roots. (3) As drought intensified, leaf physiological traits exhibited either a gradual decline followed by a sharp drop, or a pattern of slow decrease-transient rebound-abrupt decrease. The results indicate that drought significantly suppresses carbon metabolism in plants, and that there is a trade-off in the response of non-structural carbohydrates in leaves and roots to lethal drought, reflecting a strategy of prioritizing carbon allocation to roots. This study provides a theoretical basis for understanding the physiological mechanisms of Rhododendron species in response to extreme drought.


Key words: Rhododendron decorum, drought stress, carbon balance, non-structural carbohydrate