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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Linking recruitment to trophic factors: revisiting the Beverton-Holtrecruitment model from a life history and multispecies perspective
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Linking recruitment to trophic factors: revisiting the Beverton-Holtrecruitment model from a life history and multispecies perspective

机译:将招聘与营养因素联系起来:从生活史和多物种角度重新审视Beverton-Holtrecruitment模型

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The Beverton-Holt recruitment model can be derived from arguments about evolution of life history traits related to foraging and predation risk, along with spatially localized and temporarily competitive relationships in the habitats where juvenile fish forage and face predation risk while foraging. This derivation explicitly represents two key biotic factors, food supply (I) and predator abundance (R), which appear as a risk ratio (R/I) that facilitates modelling of changes in trophic circumstances and analysis of historical data. The same general recruitment relationship is expected whether the juvenile life history is simple or involves a complex sequence of stanzas; in the complex case, the Beverton-Holt parameters represent weighted averages or integrals of risk ratios over the stanzas. The relationship should also apply in settings where there is complex, mesoscale variation in habitat and predation risk, provided that animals sense this variation and move about so as to achieve similar survival at all mesoscale rearing sites. The model predicts that changes in food and predation risk can be amplified violently in settings where juvenile survival rate is low, producing large changes in recruitment rates over time. [References: 25]
机译:Beverton-Holt征募模型可以从与觅食和捕食风险相关的生活史特征演变的论证,以及在幼鱼觅食并在觅食时面临捕食风险的生境中的空间局部和临时竞争关系中得出。该推导明确代表了两个关键的生物因素,即食物供应(I)和捕食者丰富度(R),它们以风险比(R / I)出现,可促进对营养环境变化的建模和历史数据的分析。无论少年的生活史是简单的还是节段的序列复杂,都期望有相同的一般招聘关系;在复杂情况下,Beverton-Holt参数表示各节的风险比率的加权平均值或积分。这种关系也应适用于栖息地和捕食风险具有复杂的中尺度变化的环境,只要动物能够感知到这种变化并四处走动,以便在所有中尺度饲养场所实现相似的生存。该模型预测,在未成年生存率较低的环境中,食物和捕食风险的变化可能会急剧放大,随着时间的推移,招募率会发生较大变化。 [参考:25]

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