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首页> 外文期刊>Journal of Theoretical Biology >OSIRIS: A model for integrating the effects of multiple stressors on marine ecosystems
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OSIRIS: A model for integrating the effects of multiple stressors on marine ecosystems

机译:Osiris:一种用于整合多个压力源对海洋生态系统的效果的模型

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While much has been learnt about the impacts of specific stressors on individual marine organisms, considerable debate exists over the nature and impact of multiple simultaneous stressors on both individual species and marine ecosystems. We describe a modelling tool (OSIRIS) for integrating the effects of multiple simultaneous stressors. The model is relatively computationally light, and demonstrated using a coarse-grained, non-spatial and simplified representation of a temperate marine ecosystem. This version is capable of reproducing a wide range of dynamic responses. Results indicate the degree to which interactions are synergistic is crucial in determining sensitivity to forcing, particularly for the higher trophic levels, which can respond non-linearly to stronger forcing. Stronger synergistic interactions sensitize the system to variability in forcing, and combinations of stronger forcing, noise and synergies between effects are particularly potent. This work also underlines the significant potential risk incurred in treating stressors on ecosystems as individual and additive. (C) 2020 Elsevier Ltd. All rights reserved.
机译:虽然已经了解了对个体海洋生物对个体海洋生物对个体海洋生物的影响,但在各种物种和海洋生态系统上的多个同时压力源的性质和影响中存在相当大的争论。我们描述了一种用于集成多个同时应激源的效果的建模工具(Osiris)。该模型是相对计算的光线,并使用温带海洋生态系统的粗粒,非空间和简化表示来证明。此版本能够再现各种动态响应。结果表明相互作用是协同性的程度对于确定对强迫的敏感性至关重要,特别是对于较高的营养水平,这可以对更强的强制进行反应。更强大的协同互动使系统敏感到迫使的变化,效果之间强迫,噪音和协同效应的组合特别有效。这项工作还强调了在生态系统中作为个体和添加剂治疗压力源产生的显着潜在风险。 (c)2020 elestvier有限公司保留所有权利。

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