...
首页> 外文期刊>Marine ecology progress series >Balancing complexity and feasibility in Mediterranean coastal food-web models: uncertainty and constraints
【24h】

Balancing complexity and feasibility in Mediterranean coastal food-web models: uncertainty and constraints

机译:平衡地中海沿海食物网模型的复杂性和可行性:不确定性和制约因素

获取原文
获取原文并翻译 | 示例

摘要

Mass-balance trophic models (Ecopath and EcoTroph) are valuable tools that can be used to describe ecosystem structure and functioning, identify target species to be monitored, and allow comparisons of ecosystem states under different management options. Nevertheless, the Ecopath modelling approach is constrained by 2 major sources of uncertainty: model complexity and input data quality. We developed an approach for identifying the optimum model structure that considers trade-offs between feasibility, complexity, and uncertainty, using a Mediterranean coastal ecosystem as a case study. We began with an existing well-documented and good-quality food-web model comprising 41 functional groups at Port-Cros National Park, France. Based on this model, we assessed the effects of different aggregation choices, driven by a simplification of sampling effort, on the Ecopath and EcoTroph model outputs. We identified the functional groups in which imprecise biomass input significantly influenced the food-web model, and measured the relative effects on the ecosystem trophic structure and ecosystem maturity and complexity indices. A simplified model comprising 32 functional groups was identified as the best compromise between model complexity and reliability. High trophic level predators, abundant primary producers, and groups with a high biomass and/or diversified diet significantly influenced the model structure. We concluded that the collection of local and accurate biomass data, especially for the most influential functional groups we identified, should be a priority when developing food-web models for similar ecosystems. Our method enables simplified and standardized models, while considering both the feasibility and reliability of the Ecopath and EcoTroph applications for Mediterranean coastal ecosystems.
机译:质量平衡营养模型(Ecopath和EcoTroph)是有价值的工具,可用于描述生态系统的结构和功能,确定要监测的目标物种以及比较不同管理方案下的生态系统状态。然而,Ecopath建模方法受到两个主要不确定性因素的约束:模型复杂性和输入数据质量。我们以地中海沿岸的生态系统为例,研究了一种确定最佳模型结构的方法,该模型考虑了可行性,复杂性和不确定性之间的折衷。我们从法国Port-Cros国家公园的一个有41个功能组的现有记录良好,质量优良的食物网模型开始。基于此模型,我们通过简化采样工作来评估不同的聚合选择对Ecopath和EcoTroph模型输出的影响。我们确定了不精确的生物量输入对食物网模型有重大影响的功能组,并测量了对生态系统营养结构,生态系统成熟度和复杂性指标的相对影响。包含32个功能组的简化模型被确定为模型复杂性和可靠性之间的最佳折衷方案。营养级高的捕食者,丰富的初级生产者以及具有高生物量和/或多样化饮食的群体极大地影响了模型结构。我们得出的结论是,在为类似生态系统开发食物网模型时,应该优先收集本地和准确的生物量数据,尤其是对于我们确定的最具影响力的功能组。我们的方法支持简化和标准化的模型,同时考虑了Ecopath和EcoTroph应用程序在地中海沿岸生态系统中的可行性和可靠性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号