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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Vertebrate exploitation of pulsed marine prey: a review and the example of spawning herring
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Vertebrate exploitation of pulsed marine prey: a review and the example of spawning herring

机译:脉冲海洋猎物的脊椎动物开发:回顾和产卵鲱鱼的示例

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摘要

Short-term bursts of prey availability occur in many ecosystems and have potential important consequences for both predator biology and ecosystem function. Examples of prey ‘pulses’ in marine ecosystems include spawning runs of several anadromous and marine fishes, horseshoe crab spawning, and salmonid juvenile outmigrations, which are exploited by numerous species of vertebrate predators. In a few cases, the fitness or demographic consequences of such predator–prey interactions are known or inferred, but too often that information remains unknown. We explored the extent of temporal and spatial variation in one example of a pulsed marine resource: the spawning of Pacific herring (Clupea pallasii). Spawning herring provide a rich, aggregated resource to which dozens of species of vertebrate predators often exhibit strong numerical responses. However, the spawning events are often variable in both time (annual differences of several to many weeks) and space (both regional and more local differences in size and timing of events). Such variability must affect more mobile predators less than area-restricted predators, and thus its effect would vary not only among species but also within species, depending on constraints of the predator life history. Unpredictability of the prey concentrations, whatever their proximate causes, may contribute to maintenance of metapopulations of prey such as herring, if unpredictability lessens the impact of predation.
机译:猎物可利用性的短期爆发发生在许多生态系统中,它们对捕食者生物学和生态系统功能都有潜在的重要影响。海洋生态系统中猎物“脉冲”的例子包括数种无脊椎动物和海洋鱼类的产卵,runs蟹的产卵和鲑鱼幼体的外来,这些物种被许多脊椎动物捕食者利用。在少数情况下,这种食肉动物与猎物之间互动的适应性或人口统计学后果是已知的或推断的,但很多时候这些信息仍然未知。我们在一个脉冲海洋资源示例中探索了时空变化的程度:太平洋鲱鱼(Clupea pallasii)的产卵。产卵鲱鱼提供了丰富的,聚集的资源,数十种脊椎动物掠食性动物经常对此产生强烈的数值响应。但是,产卵事件通常在时间(每年几到几周的年度差异)和空间(事件的大小和时间的区域差异和局部差异)方面都是可变的。这种可变性必须比限制区域的捕食者更少地影响更多的移动捕食者,因此,其影响不仅在物种之间而且在物种内部也将有所不同,这取决于捕食者生活史的限制。如果不可预测性降低了捕食的影响,则无论其直接原因如何,猎物浓度的不可预测性都可能有助于维持诸如鲱鱼之类的猎物的种群。

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