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Including species interactions in risk assessments for global change

机译:将物种相互作用纳入全球变化的风险评估中

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Most ecological risk assessments for global change are restricted to the effects of trends in climate or atmospheric carbon dioxide. In order to move beyond investigation of the effects of climate alone, the CLIMAX (TM) model was extended to investigate the effects of species interactions, in the same or different trophic levels, along environmental gradients on a geographical scale. Specific needs that were revealed during the investigations include: better treatment of the effects of temporal and spatial climatic variation; elucidation of the nature of boundaries of species ranges; data to quantify the role of species traits in interspecies interactions; integrated observational, experimental, and modelling studies on mechanisms of species interactions along environmental gradients; and high-resolution global environmental datasets. Greater acknowledgement of the shared limitations of simplified models and experimental studies is also needed. Above all, use of the scientific method to understand representative species ranges is essential. This requires the use of mechanistic approaches capable of progressive enhancement.
机译:大多数针对全球变化的生态风险评估仅限于气候或大气二氧化碳趋势的影响。为了超越仅对气候影响的研究范围,CLIMAX(TM)模型被扩展为研究在相同或不同营养级别,沿着地理梯度在环境梯度上物种相互作用的影响。调查期间发现的具体需求包括:更好地处理时空气候变化的影响;阐明物种范围边界的性质;用以量化物种特征在种间相互作用中的作用的数据;关于沿环境梯度的物种相互作用机制的综合观察,实验和模型研究;和高分辨率的全球环境数据集。还需要更多地承认简化模型和实验研究的共同局限性。最重要的是,使用科学方法来了解代表性物种的范围至关重要。这需要使用能够逐步增强的机械方法。

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