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解析大型浅水湖泊中磷负荷对食物网稳定性的影响。

Disentangling the effects of phosphorus loading on food web stability in a large shallow lake.

作者信息

Zhang Xiaoxin, Yi Yujun, Cao Yuanxin, Yang Zhifeng

机构信息

State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing, 100875, China; Jiangsu Engineering Laboratory for Environmental Functional Materials, Jiangsu Collaborative Innovation Center of Regional Modern Agriculture & Environmental Protection, School of Chemistry and Chemical Engineering, Huaiyin Normal University, Huaian, Jiangsu, 223300, China.

State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing, 100875, China.

出版信息

J Environ Manage. 2023 Feb 15;328:116991. doi: 10.1016/j.jenvman.2022.116991. Epub 2022 Dec 9.

Abstract

Excessive nutrient loads reduce ecosystem resilience, resulting in fundamental changes in ecosystem structure and function when exceeding a certain threshold. However, quantitative analysis of the processes by which nutrient loading affects ecosystem resilience requires further exploration. Food web stability is at the heart of ecosystem resilience. In this study, we simulated the dynamics of the food web under different phosphorus loads for Lake Baiyangdian using the PCLake model and calculated the food web stability. Our results showed that there was a good correspondence between the food web stability and ecosystem state response to phosphorus loads. This relationship confirmed that food web stability could be regarded as a signal for the state transition in a real lake ecosystem. Moreover, our estimates suggested that food web stability was influenced only by several functional groups and their interaction strength. Diatoms and zooplankton were the key functional groups that affected food web stability. Phosphorus loads alter the distribution of functional group biomass, which in turn affects energy delivery and, ultimately, the stability of the food web. Corresponding to functional groups, the interactions among zooplankton, diatoms and detritus had the greatest impact, and the interaction strength of the three was positively correlated with food web stability. Overall, our study explained that food-web stability was critical to characterize ecosystem resilience response to external disturbances and can be turned into a scientific tool for lake ecosystem management.

摘要

过量的养分负荷会降低生态系统的恢复力,当超过一定阈值时,会导致生态系统结构和功能发生根本性变化。然而,对于养分负荷影响生态系统恢复力的过程进行定量分析仍需进一步探索。食物网稳定性是生态系统恢复力的核心。在本研究中,我们使用PCLake模型模拟了白洋淀在不同磷负荷下食物网的动态变化,并计算了食物网稳定性。我们的结果表明,食物网稳定性与生态系统对磷负荷的状态响应之间存在良好的对应关系。这种关系证实了食物网稳定性可被视为真实湖泊生态系统中状态转变的一个信号。此外,我们的估计表明,食物网稳定性仅受几个功能组及其相互作用强度的影响。硅藻和浮游动物是影响食物网稳定性的关键功能组。磷负荷改变了功能组生物量的分布,进而影响能量传递,最终影响食物网的稳定性。与功能组相对应,浮游动物、硅藻和碎屑之间的相互作用影响最大,三者的相互作用强度与食物网稳定性呈正相关。总体而言,我们的研究表明,食物网稳定性对于表征生态系统对外部干扰的恢复力响应至关重要,并且可以成为湖泊生态系统管理的科学工具。

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