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Complex interplays among population dynamics, environmental forcing, and exploitation in fisheries

机译:人口动态,环境强迫和渔业开发之间复杂的相互作用

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摘要

The patterns of variations in fisheries time series are known to result from a complex combination of species and fisheries dynamics all coupled with environmental forcing (including climate, trophic interactions, etc.). Disentangling the relative effects of these factors has been a major goal of fisheries science for both conceptual and management reasons. By examining the variability of 169 tuna and billfish time series of catch and catch per unit effort (CPUE) throughout the Atlantic as well as their linkage to the North Atlantic Oscillation (NAO), we find that the importance of these factors differed according to the spatial scale. At the scale of the entire Atlantic the patterns of variations are primarily spatially structured, whereas at a more regional scale the patterns of variations were primarily related to the fishing gear. Furthermore, the NAO appeared to also structure the patterns of variations of tuna time series, especially over the North Atlantic. We conclude that the patterns of variations in fisheries time series of tuna and billfish only poorly reflect the underlying dynamics of these fish populations; they appear to be shaped by several successive embedded processes, each interacting with each other. Our results emphasize the necessity for scientific data when investigating the population dynamics of large pelagic fishes, because CPUE fluctuations are not directly attributable to change in species' abundance.
机译:众所周知,渔业时间序列的变化模式是由于物种和渔业动态的复杂结合以及环境强迫(包括气候,营养相互作用等)共同导致的。出于概念和管理上的原因,弄清这些因素的相对影响已成为渔业科学的主要目标。通过研究整个大西洋的169个金枪鱼和比目鱼时间序列的捕获量和单位捕捞量(CPUE)的变异性及其与北大西洋涛动(NAO)的联系,我们发现这些因素的重要性根据空间尺度。在整个大西洋的尺度上,变化的模式主要是空间结构,而在更大的区域尺度上,变化的模式主要与渔具有关。此外,NAO似乎还构造了金枪鱼时间序列变化的模式,尤其是在北大西洋上空。我们得出的结论是,金枪鱼和比目鱼的渔业时间序列的变化方式仅能很好地反映这些鱼类种群的基本动态。它们似乎是由几个连续的嵌入式过程所形成的,每个过程相互交互。我们的结果强调了在调查大型中上层鱼类种群动态时需要科学数据的必要性,因为CPUE的波动并不能直接归因于物种丰度的变化。

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