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吉林莫莫格国家级自然保护区小微湿地面积变化及驱动因素

Area changes and driving factors of small and micro wetlands in Jilin Momoge National Nature Reserve

  • 摘要: 小微湿地对维系生物多样性与生态平衡至关重要,但其面积小、易蒸发的特性,使其对气候变化和人类活动格外敏感,因此极易退化与受损。以吉林莫莫格国家级自然保护区为研究区,选取1994—2020年期间的6期遥感影像,综合运用景观格局指数分析与地理加权回归模型(GWR),量化小微湿地面积变化、景观破碎化特征,并解析气候与人为因素交互作用对小微湿地的影响机制。研究结果表明,研究区小微湿地面积减少17.12%,数量减少36.71%,景观破碎化加剧;GWR模型分析结果表明,气候因素中蒸发量是导致小微湿地面积减少的主要驱动力;人为因子中耕地开发与道路邻近度加剧了小微湿地的破碎化;空间异质性分析表明,西南部小微湿地受蒸发胁迫发生显著退化,而东部小微湿地依托大型湿地的水文调蓄功能构建了生态缓冲带,为莫莫格自然保护区小微湿地的保护与恢复提供科学根据。

     

    Abstract: Small and micro wetlands play an essential role in maintaining biodiversity and ecological balance. However, because of their limited spatial extent and high susceptibility to evaporation, they are particularly sensitive to climate change and human disturbance, and therefore prone to degradation and loss. Taking the Jilin Momoge National Nature Reserve as the study area, this study selected six phases of remote sensing images from 1994 to 2020 and combined landscape pattern index analysis with a geographically weighted regression model (GWR) to quantify changes in the area and number of small and micro wetlands, characterize their landscape fragmentation, and identify the mechanisms through which climatic and anthropogenic factors jointly influence wetland dynamics. The results show that the area of small and micro wetlands decreased by 17.12% during the study period, while the number of wetland patches declined by 36.71%, indicating a clear trend of wetland shrinkage and increasing landscape fragmentation. The GWR results further reveal that, among climatic factors, evaporation was the dominant driver of wetland area reduction. Increased evaporation intensified water loss in small and micro wetlands, thereby weakening their hydrological stability and accelerating ecological degradation. At the same time, the expansion of saline-alkali land further aggravated water depletion, vegetation degradation, and overall wetland shrinkage, suggesting that climatic stress and land surface degradation can interact to amplify ecological vulnerabilityIn terms of human disturbance, cultivated land development and proximity to roads were found to intensify the fragmentation of small and micro wetlands. Agricultural expansion altered the surrounding land-use structure and compressed wetland habitats, while road networks increased landscape separation and weakened ecological connectivity. These factors jointly contributed to the decline in wetland patch integrity and the deterioration of wetland landscape patterns. The spatial heterogeneity analysis indicates that small and micro wetlands in the southwestern part of the reserve experienced significant degradation under evaporation stress, showing stronger ecological vulnerability in areas with relatively weak hydrological support. In contrast, small and micro wetlands in the eastern part benefited from the hydrological regulation capacity of adjacent large wetlands, which helped form an ecological buffer zone and reduced the intensity of degradation. This spatial difference confirms the effectiveness of differentiated zoning-based conservation strategies. Overall, the study demonstrates that the degradation of small and micro wetlands in the Momoge National Nature Reserve is the result of combined climatic and anthropogenic pressures, with evaporation, saline-alkali land expansion, cultivated land development, and road proximity serving as key influencing factors. The findings provide a scientific basis for the protection, restoration, and spatially targeted management of small and micro wetlands in the reserve.

     

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