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徐瑛, 祝孔豪, 郭钰伦, 王康, 王韬. 高营养级捕食者在浅水湖泊沿岸带与敞水区能量耦合的维持作用[J]. 水生生物学报, 2022, 46(3): 403-409. DOI: 10.7541/2022.2021.037
引用本文: 徐瑛, 祝孔豪, 郭钰伦, 王康, 王韬. 高营养级捕食者在浅水湖泊沿岸带与敞水区能量耦合的维持作用[J]. 水生生物学报, 2022, 46(3): 403-409. DOI: 10.7541/2022.2021.037
XU Ying, ZHU Kong-Hao, GUO Yu-Lun, WANG Kang, WANG Tao. THE ROLE OF UPPER TROPHIC LEVEL PREDATORS IN MAINTAINING THE PELAGIC AND LITTORAL HABITAT ENERGY COUPLING IN SHALLOW LAKES[J]. ACTA HYDROBIOLOGICA SINICA, 2022, 46(3): 403-409. DOI: 10.7541/2022.2021.037
Citation: XU Ying, ZHU Kong-Hao, GUO Yu-Lun, WANG Kang, WANG Tao. THE ROLE OF UPPER TROPHIC LEVEL PREDATORS IN MAINTAINING THE PELAGIC AND LITTORAL HABITAT ENERGY COUPLING IN SHALLOW LAKES[J]. ACTA HYDROBIOLOGICA SINICA, 2022, 46(3): 403-409. DOI: 10.7541/2022.2021.037

高营养级捕食者在浅水湖泊沿岸带与敞水区能量耦合的维持作用

THE ROLE OF UPPER TROPHIC LEVEL PREDATORS IN MAINTAINING THE PELAGIC AND LITTORAL HABITAT ENERGY COUPLING IN SHALLOW LAKES

  • 摘要: 研究利用保安湖沿岸带与敞水区两种生境中高营养级捕食者(达氏鲌与红鳍原鲌)的碳(δ13C)、氮(δ15N)稳定同位素数据, 通过稳定同位素质量平衡混合模型、非度量多维尺度分析(NMDS)等方法, 分析了两种生境中鲌类食物来源的差异。结果表明, 两种生境中鲌类食物来源基本一致, 且食物来源较为广泛, 包括沿岸带饵料鱼类、敞水区饵料鱼类、浮游动物和底栖动物等来源。这进一步说明, 保安湖高营养级捕食者——达氏鲌与红鳍原鲌在运动与捕食过程中, 将来自沿岸带与敞水区两种生境中的营养与能量整合在一起, 实现了不同湖泊生境间的耦合, 对于维持保安湖生态系统的营养循环、食物网功能的完整性与稳定性发挥了重要作用。

     

    Abstract: Lakes are complex ecosystems composed of distinct subsystems or habitats. The interactions among these habitats and the energy and material flow of the food web have been the focus of ecological research. In lake ecosystems, there are great differences in environmental conditions between pelagic and littoral habitats, but few studies investigated how the food webs of these two habitats related closely to realize the transfer and flow of matter and energy. Predators play an important role in the energy flow and material circulation of food webs between different habitats due to their high mobility and wide range of activities. Culters, a high nutrient consumer of lakes and reservoirs, play an important role in regulating aquatic biological communities. This study analyses the stable isotope (δ13C and δ15N) data of upper trophic level predators (Culter dabryi and Cultrichthys erythropterus) and their food sources from pelagic and littoral habitats in Bao’an Lake. We integrated the food sources of Culter dabryi and Cultrichthys erythropterus according to their feeding habits, forming four types of nutrient sources, zooplankton, zoobenthos, pelagic prey fish, and littoral prey fish for model construction. Differences in food sources between these predators in different habitats are analyzed by the stable isotope mixing model and nonmetric multidimensional scaling (NMDS). Stable isotope mixing model, which can be used to analyze consumer nutrition sources, to determine a variety of food sources contribute to the consumers’ nutrition proportion. Results showed no significant differences in food sources of culters between pelagic and littoral habitats, and the food sources are relatively extensive and include pelagic prey fish, littoral prey fish, zooplankton, and zoobenthos. The results suggested that these culters are in the process of movement and predation, causing the integration of energy and nutrients from the discontinuous food chains in pelagic and littoral habitats, and increasing the degree of habitat coupling. Hence, the two predators play an important role in maintaining the nutrients cycle and food web structure and stability in the Bao’an Lake ecosystem.

     

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