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首页> 外文期刊>The Journal of Applied Ecology >Quantifying deep-sea predator–prey dynamics:Implications of biological heterogeneity for beaked whale conservation
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Quantifying deep-sea predator–prey dynamics:Implications of biological heterogeneity for beaked whale conservation

机译:量化深海捕食动态:生物异质性的影响突吻鲸保护

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1.Prey distribution and density drive predator habitat usage and foraging behaviour.Understanding ecological relationships is necessary for effective management in any environment but can be challenging in certain contexts.While there has been substantial effort to quantify human disturbance for some protected,deep-diving marine mammals,there are virtually no direct measurements of deep-sea predator– prey dynamics.2.We used recently developed techniques to measure deep-water squid abundance,size and distribution within foraging habitat areas of deep-diving Cuvier's beaked whales (Ziphius cavirostris) on and around a Navy training range where sonar is often used.Beaked whales are a management priority as both mortal strandings and sublethal disturbance have occurred in association with Navy mid-frequency sonar.3.We found large differences in prey (squid) abundance over small horizontal distances.Highest squid densities occurred within a commonly utilized foraging area on the range.Much lower prey abundance was measured in adjacent,bathymetrically similar areas less commonly used for foraging.4.By combining prey densities with available behavioural and energetic data,we generate relativistic energetic assessments of foraging habitat quality.This provides a simple,yet quantitative means of evaluating fitness implications of spatial prey heterogeneity and associated consequences of disturbance.5.Synthesis and applications.Given the challenges deep-diving predators face with limited foraging time in extreme environments,small-scale prey heterogeneity can have substantial implications for foraging success.Our results provide fine-scale data within neighbouring beaked whale foraging habitat areas commonly disturbed by sonars.These results have direct management implications and inform population- level models of disturbance consequences with empirical data on the foraging ecology of these protected species.These issues have been at the heart of recent debate and litigatio
机译:1.栖息地的使用和觅食的行为。有效的管理是必要的吗环境,可以在某些具有挑战性上下文。为一些量化人为干扰保护,深海海洋哺乳动物,有几乎没有深海的直接测量捕食者-猎物dynamics.2。开发技术来测量深海鱿鱼丰度、大小和分布在觅食栖息地的深度居维叶的喙鲸鱼(Ziphius cavirostris)和海军培训范围,声纳是经常使用。鲸鱼是一个管理优先级的凡人搁浅事件和亚致死的干扰发生在与海军中心频率sonar.3。(鱿鱼)丰度小的水平距离。通常利用觅食区的范围内。相邻,bathymetrically相似的地区更少一般用于foraging.4。密度与行为和可用精力充沛的数据,我们生成相对论精力充沛觅食生境质量的评估。提供了一个简单的,但定量的方法评估健康的影响空间的猎物异质性和相关的后果disturbance.5。深海捕食者所面临的挑战有限的觅食时间在极端环境,小型猎物异质性有很大的启示觅食成功。在邻近的突吻鲸觅食的栖息地区域通常被声波。直接管理的影响和通知吗人口——水平的干扰模型结果与实验数据在觅食这些受保护的物种的生态。最近的争论的核心,litigatio

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