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Which forcing factors fit? Using ecosystem models to investigate the relative influence of fishing and changes in primary productivity on the dynamics of marine ecosystems

机译:哪个强迫因素适合? 使用生态系统模型来研究捕捞和初级生产率的相对影响对海洋生态系统动态的初级生产力

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Fishing mortality and primary production (or proxy for) were used to drive the dynamics of fish assemblages in 9 trophodynamic models of contrasting marine ecosystems. Historical trends in abundance were reconstructed by fitting model predictions to observations from stock assessments and fisheries independent survey data. The model fitting exercise derives values for otherwise unknown parameters that specify the relative strength of trophic interactions and, in some instances, a time series anomaly for changes in primary production. We measured how much better or worse were model predictions when bottom-up forcing by primary production were added to top-down forcing by fishing. Searching for cross system patterns, the relative contribution of fishing and changes in primary production, mediated through trophic interactions, are evaluated for the ecosystems as a whole and for selected similar species in different ecosystems. The analysis provides a simple qualitative way to explain which forcing factors have most influence on modeled dynamics. Both fishing and primary production forcing were required to obtain the best model fits to data. Fishing effects more strongly influenced 6 of 9 of the ecosystems, but primary production was more often found to be the main factor influencing the selected pelagic and demersal fish stock trends. Examination of sensitivity to ecological and model parameters suggests that the results are the product of complex food-web interactions rather than simple deterministic responses of the models.
机译:钓鱼死亡率和初级生产(或代理)用于推动9个跨科技模型的鱼组合的动态,对比的海洋生态系统。通过拟合模型预测来重建丰富的历史趋势,从股票评估和渔业独立调查数据的观察到观察。模型拟合锻炼旨在为否则未知的参数提供值,该参数指定营养互动的相对强度,并且在某些情况下,时间序列异常用于初级生产的变化。当通过捕鱼加入到自然生产时,衡量模型预测的模型预测的程度更好或更糟。寻找跨系统模式,捕鱼的相对贡献和通过营养互动介导的初级生产的变化,为整个生态系统评估生态系统,以及不同生态系统中所选类似物种。分析提供了一种简单的定性方法来解释哪些强迫因素对建模动态产生最大影响。钓鱼和初级生产强制性都需要获得最佳模型适合数据。捕捞效果影响了9个生态系统中的6个,但更常常发现初级生产是影响所选择的骨质和倒影股趋势的主要因素。对生态和模型参数的敏感性检查表明,结果是复杂的食品网相互作用的产物,而不是模型的简单确定性响应。

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