...
首页> 外文期刊>Marine ecology progress series >Including foraging arena and top-down controls improves the modeling of trophic flows and fishing impacts in aquatic food webs
【24h】

Including foraging arena and top-down controls improves the modeling of trophic flows and fishing impacts in aquatic food webs

机译:包括觅食场所和自上而下的控件,可以改善水生食物网中营养流和捕鱼影响的建模

获取原文
获取原文并翻译 | 示例

摘要

Food web dynamics consist of processes that affect ecosystem structure and functioning. EcoTroph (ET) is a recently developed approach and software for modeling aquatic ecosystems, articulated entirely around the trophic level concept. Here, we used ET to investigate impacts of 2 trophic controls (i.e. foraging arena and top-down controls) on marine ecosystem trophic flows and associated fishing effects. A new version of the ET model accounting for the foraging arena theory was developed. Cross impacts of the 2 trophic controls and different fishing scenarios were analyzed using a virtual ecosystem. Results showed that foraging arena controls decreased the resistance and production of an ecosystem facing increasing fishing mortality. In contrast, the inclusion of top-down controls resulted in a more resistant ecosystem, with a decrease in the kinetics of trophic flows at lower trophic levels (TLs) when the abundance of higher TLs is reduced by fishing. These 2 controls increased the interactions between TLs, and, in part, shaped fishing impacts at the ecosystem scale. Then, we applied ET to 3 real ecosystems which have been previously modeled using Ecopath with Ecosim (EwE). EcoTroph and Ecosim predictions related to changes in fishing effort were compared, and showed that accounting for trophic controls enabled EcoTroph to mimic Ecosim models, and better reflect associated changes in trophic flows. The 3 case studies exhibited different behaviors: while the pelagic ecosystem had strong foraging arena controls but no top-down controls, the other ecosystems were characterized by weaker foraging arena controls but effective top-down controls.
机译:食物网动态包括影响生态系统结构和功能的过程。 EcoTroph(ET)是最近开发的用于对水生生态系统进行建模的方法和软件,完全围绕营养级概念进行了阐述。在这里,我们使用ET来研究2种营养控制措施(即觅食场和自上而下的控制措施)对海洋生态系统营养流动和相关捕捞影响的影响。开发了解释觅食场所理论的ET模型的新版本。使用虚拟生态系统分析了两个营养控制和不同捕鱼场景的交叉影响。结果表明,觅食场所的控制降低了面临捕捞死亡率增加的生态系统的抵抗力和产量。相比之下,自上而下的控制措施导致了更具抵抗力的生态系统,当通过捕鱼减少了较高的TL含量时,较低的营养水平(TL)的营养流动动力学下降。这两个控制措施增加了TL之间的相互作用,并部分地在生态系统规模上影响了捕捞活动。然后,我们将ET应用于3个真实的生态系统,这些生态系统之前已使用Ecopath与Ecosim(EwE)进行了建模。比较了与捕捞努力变化有关的EcoTroph和Ecosim预测,结果表明,对营养控制的考虑使EcoTroph能够模仿Ecosim模型,并更好地反映营养流的相关变化。这3个案例研究表现出不同的行为:虽然中上层生态系统具有较强的觅食场所控制但没有自上而下的控制,而其他生态系统的特征是较弱的觅食场所控制而有效的自上而下的控制。

著录项

相似文献

  • 外文文献
  • 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