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Contrasting Responses to Harvesting and Environmental Drivers of Fast and Slow Life History Species

机译:对快慢生命史物种的采伐和环境驱动因素的不同反应

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摘要

According to their main life history traits, organisms can be arranged in a continuum from fast (species with small body size, short lifespan and high fecundity) to slow (species with opposite characteristics). Life history determines the responses of organisms to natural and anthropogenic factors, as slow species are expected to be more sensitive than fast species to perturbations. Owing to their contrasting traits, cephalopods and elasmobranchs are typical examples of fast and slow strategies, respectively. We investigated the responses of these two contrasting strategies to fishing exploitation and environmental conditions (temperature, productivity and depth) using generalized additive models. Our results confirmed the foreseen contrasting responses of cephalopods and elasmobranchs to natural (environment) and anthropogenic (harvesting) influences. Even though a priori foreseen, we did expect neither the clear-cut differential responses between groups nor the homogeneous sensitivity to the same factors within the two taxonomic groups. Apart from depth, which affected both groups equally, cephalopods and elasmobranchs were exclusively affected by environmental conditions and fishing exploitation, respectively. Owing to its short, annual cycle, cephalopods do not have overlapping generations and consequently lack the buffering effects conferred by different age classes observed in multi-aged species such as elasmobranchs. We suggest that cephalopods are sensitive to short-term perturbations, such as seasonal environmental changes, because they lack this buffering effect but they are in turn not influenced by continuous, long-term moderate disturbances such as fishing because of its high population growth and turnover. The contrary would apply to elasmobranchs, whose multi-aged population structure would buffer the seasonal environmental effects, but they would display strong responses to uninterrupted harvesting due to its low population resilience. Besides providing empirical evidence to the theoretically predicted contrasting responses of cephalopods and elasmobranchs to disturbances, our results are useful for the sustainable exploitation of these resources.
机译:根据其主要的生活史特征,生物体可以从快(体型小,寿命短且繁殖力高的物种)到慢速(具有相反特征的物种)连续排列。生命史决定了生物体对自然和人为因素的反应,因为慢物种比快物种对扰动的敏感性更高。由于其截然相反的特征,头足类和弹性分支分别是快速和缓慢策略的典型例子。我们使用广义加性模型研究了这两种截然不同的策略对捕捞开发和环境条件(温度,生产力和深度)的响应。我们的结果证实了可预见的头足类和弹性分支对自然(环境)和人为(收获)影响的对比反应。即使有先验的预见,我们也没有期望两组之间的明确差异反应或两个分类组内对相同因素的同质敏感性。除了深度对两组均造成影响外,头足类和弹性支类分别分别受环境条件和捕捞活动影响。由于头足类动物的年轮周期短,它们不具有重叠的世代,因此缺乏在多年龄物种如弹性支中观察到的不同年龄类别所赋予的缓冲作用。我们建议头足类动物对短期摄动(例如季节性环境变化)敏感,因为它们没有这种缓冲作用,但是由于种群数量和营业额较高,它们又不受连续,长期中度干扰(例如捕鱼)的影响。相反的情况适用于弹性分支机构,其多年龄人口结构将缓冲季节性环境影响,但由于其种群适应力低,它们会对不间断的收获表现出强烈的反应。除了为实证研究头足类和弹性分支对干扰的反演反应提供经验证据外,我们的研究结果对于这些资源的可持续开发是有用的。

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