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生态学杂志 ›› 2025, Vol. 44 ›› Issue (1): 206-215.doi: 10.13292/j.1000-4890.202501.004

• 研究报告 • 上一篇    下一篇

流域土地利用对泸沽湖生态环境的影响

刘园园1,陈光杰2*,王露2,索旗2   

  1. 1楚雄师范学院, 云南楚雄 675000; 2云南师范大学, 昆明 650500)
  • 出版日期:2025-01-10 发布日期:2025-01-16

The influence of watershed land use on the ecological environment in Lugu Lake.

LIU Yuanyuan1, CHEN Guangjie2*, WANG Lu2, SUO Qi2   

  1. (1Chuxiong Normal University, Yunnan Chuxiong 675000, China; 2Yunnan Normal University, Yunnan Kunming 650500, China).

  • Online:2025-01-10 Published:2025-01-16

摘要: 在全球气候变暖的背景下,日渐增强的人类活动已经显著改变了自然状态下湖泊环境与生态系统演化的过程。为了探究泸沽湖流域过程与湖泊生态环境间的关系,本研究于2019年测定了泸沽湖流域不同植被类型下碳酸盐岩的溶蚀速率,并调查了湖泊水质及硅藻群落结构的季节性变化。结果表明:流域不同植被类型下碳酸盐岩溶蚀速率显著不同,自然植被覆盖下的碳酸盐岩的溶蚀速率总体高于人为干扰土地(农田);流域溶蚀作用与陆源输入显著影响湖水溶解性无机碳季节变化;硅藻群落季节性演替的重要塑造因子为营养盐(10.3%)、水温(7.8%)、硅酸盐含量(5.7%),其群落中喜氮种全年占优,小个体硅藻(Cyclotella ocellata)在夏季优势明显。研究表明,泸沽湖流域过程与湖泊环境存在强耦合关系,湖泊保护与管理离不开对流域环境的合理规划与利用。


关键词: 土地利用类型, 喀斯特, 湖泊碳循环, 硅藻

Abstract: In the context of global warming, increasing human activities have significantly altered the ecological evolution of lakes. To understand the relationships between watershed processes and the ecological environment of Lugu Lake, we measured the weathering rate of carbonate rocks under different vegetation types in the watershed, and investigated seasonal dynamics of water quality and diatom communities in 2019. The weathering rate of carbonate rocks was significantly different between habitats with different vegetation types, which was higher under natural vegetation (forest land, shrub, grassland, etc.) than that under humandisturbed land (farmland). Catchment weathering and terrestrial input exerted significant effects on seasonal variations of dissolved inorganic carbon concentration in water column. Three factors (nutrient concentrations, water temperature, and silicate concentration) shaped the seasonal variations of diatom communities, which were dominated by nitrophilous taxa through the whole year and by small-sized species (Cyclotella ocellata) in summer. Our results indicate that there is a strong coupling between catchment processes and lake environments, and highlight the dependence of lake protection and effective management on the rational planning and exploitation of lake catchment.


Key words: land use type, karst, lake carbon cycling, diatom