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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 996-1005.doi: 10.13292/j.1000-4890.202603.027

• 研究报告 • 上一篇    下一篇

西南高山峡谷区植被光合动态演变及其驱动机制

倪朦朦1,吴秀芹1*,辛智鸣1,2,刘亚楠1


  

  1. 1北京林业大学水土保持学院, 北京 100083; 2中国林业科学研究院沙漠林业实验中心, 内蒙古磴口 015200)

  • 出版日期:2026-03-10 发布日期:2026-09-01

The dynamic variation and driving mechanism of vegetation photosynthesis in the alpine canyon area of Southwest China.

NI Mengmeng1, WU Xiuqin1*, XIN Zhiming1,2, LIU Yanan1   

  1. (1School of Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China; 2Experimental Center of Desert Forestry, Chinese Academy of Forestry, Dengkou 015200, Inner Mongolia, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 西南高山峡谷区是我国重要的生态安全屏障。光合作用对维护生态系统平衡具有重要作用,认识其植被光合变化特征及其驱动机制对了解区域生态系统的健康状况和应对气候变化具有重要现实意义。本研究基于GOSIF数据,采用Sen+MK趋势检验、变异系数和Hurst指数等方法分析植被光合的时空演变特征,采用地理探测器探究其空间分异驱动机制。结果表明:(1)2001—2020年间西南高山峡谷区日光诱导叶绿荧光指数(solar-induced chlorophyll fluorescence,SIF)总体上呈现波动缓慢上升趋势,空间上整体呈现“南高北低”的分布格局,SIF随海拔降低表现出升高趋势。(2)SIF整体变化趋势空间分布表现出明显异质性,上升的区域占比为64.82%,主要分布在研究区云南省南部及四川省凉山彝族自治州和甘孜藏族自治州。(3)SIF整体稳定性良好,分布在海拔4500 m以上的区域稳定性较差;Hurst指数仅略低于0.5,表明未来一段时间内研究区SIF变化趋势整体较为稳定且波动较小,其未来变化趋势的空间分布与当前SIF变化趋势的空间格局基本一致。(4)主导研究区植被光合动态空间分异的因子有高程、气温、蒸散发、降水。相较单因子探测结果,交互作用结果中极端气候因子影响能力表现出较高水平。研究结果为西南高山峡谷区植被生态系统保护与气候变化研究提供重要参考。


关键词: 植被光合动态, 日光诱导叶绿素荧光指数(SIF), 驱动机制, 遥感, 西南高山峡谷区

Abstract: The alpine canyon regions of Southwest China serve as a vital ecological security barrier for the country. Photosynthesis plays a crucial role in maintaining ecosystem equilibrium. Understanding the characteristics of vegetation photosynthetic dynamics and their driving mechanisms holds significant practical value for assessing ecosystem health and addressing climate change challenges. We utilized GOSIF data to analyze spatiotemporal variations of vegetation photosynthesis through Sen+MK trend analysis, coefficient of variation, and Hurst index. We further employed geographical detector techniques to investigate the mechanisms underlying spatial differentiation. The results showed that: (1) From 2001 to 2020, the solarinduced chlorophyll fluorescence (SIF) in the alpine canyon area of Southwest China showed a slow and fluctuating upward trend, with a spatial pattern of “high in the south and low in the north”. As the altitude decreased, the SIF showed an increasing trend. (2) The spatial distribution of the overall trend of SIF showed significant heterogeneity, with an increasing proportion of 64.82%, mainly distributed in the northern part of Yunnan Province, as well as Liangshan Yi Autonomous Prefecture and Garze Tibetan Autonomous Prefecture in Sichuan Province. (3) The SIF exhibited good overall stability, while regions distributed at altitudes above 4500 meters showed relatively low stability. The Hurst index was slightly lower than 0.5, indicating that the variation trend of SIF would be generally stable with small fluctuations in the future, and the spatial distribution of its future variation trend is basically consistent with the current spatial pattern of SIF variation trend. (4) The dominant factors driving the spatial differentiation of photosynthetic dynamics were elevation, temperature, evapotranspiration, and precipitation. Compared to single-factor analysis results, the interaction effects revealed that extreme climatic factors exhibited higher levels of influence. These findings provided references for ecosystem conservation and climate change research in the alpine canyon regions of Southwest China.


Key words: vegetation photosynthetic dynamics, solar-induced chlorophyll fluorescence (SIF), driving mechanism, remote sensing, alpine canyon area of Southwest China