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Age-structure, harvesting and climate effects on population growth of Arcto-boreal fish stocks

机译:年龄结构,捕捞和气候对北极北极鱼类种群增长的影响

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摘要

We used a comparative approach investigating commercially fished species with contrasting life histories and trophic positions in an Arcto-boreal system, the Barents Sea. Our objective was to address the ecological consequences of harvesting on stock properties (stochastic growth rate; a property related to intrinsic growth rate) in relation to different external conditions (fishing pressure and climate). We used age-structured population matrices to calculate the transient elasticity of population growth with respect to recruitment (how much population growth depends on recruitment) over time. Using a generalized additive model (GAM) analysis, we found that the transient elasticity of population growth to recruitment overall depends mostly on age structure (which in turn is affected by fishing) but also on climate (temperature change or winter North Atlantic Oscillation). Our results indicate that under warmer conditions, population growth of high latitude stocks becomes increasingly dependent on recruitment, which makes the stocks more difficult to manage. In general, there was no effect of ongoing fishing pressure on elasticity after age structure had been taken into account, supporting the view that long-term fishing pressure affects the susceptibility of the population to climate indirectly, by changing the age structure of the stock. However, for most of the stocks we have studied here, populations have low elasticity to recruitment due to their life history, meaning that the health of the stock mainly depends on survival after the recruitment stage; i.e. fisheries management is more important than climate.
机译:我们使用一种比较方法来调查商业捕鱼的物种,这些物种在Arcto-Boreal系统(巴伦支海)中具有不同的生活历史和营养位置。我们的目标是针对不同外部条件(捕鱼压力和气候)来解决收获对种群特性(随机增长率;与内在增长率相关的特性)的生态影响。我们使用年龄结构的人口矩阵来计算随时间推移的人口增长相对于招聘的瞬时弹性(多少人口增长取决于招聘)。使用广义加性模型(GAM)分析,我们发现总体而言,人口增长对招聘的短暂弹性主要取决于年龄结构(进而受捕鱼影响),还取决于气候(温度变化或北大西洋冬季涛动)。我们的结果表明,在温暖的条件下,高纬度种群的增长越来越依赖于招募,这使得这些种群更难以管理。通常,考虑到年龄结构后,持续的捕捞压力对弹性没有影响,支持以下观点:长期捕捞压力通过改变种群的年龄结构而间接影响人口对气候的敏感性。但是,对于我们在这里研究的大多数种群,种群由于其生命史而具有较低的招聘弹性,这意味着种群的健康状况主要取决于募集阶段之后的生存;也就是说,渔业管理比气候更重要。

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