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在缺乏形态多样化的情况下有利于行为多样化的生态机制:使用溪红点鲑(Salvelinus fontinalis)的理论检验

Ecological mechanisms favouring behavioural diversification in the absence of morphological diversification: a theoretical examination using brook charr (Salvelinus fontinalis).

作者信息

De Kerckhove Derrick, McLaughlin Robert L, Noakes David L G

机构信息

Department of Integrative Biology and the Axelrod Institute of Ichthyology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

J Anim Ecol. 2006 Mar;75(2):506-17. doi: 10.1111/j.1365-2656.2006.01071.x.

DOI:10.1111/j.1365-2656.2006.01071.x
PMID:16638003
Abstract
  1. Behavioural diversification is thought to be an important initial step in the origin of resource polymorphisms. We developed a model for young brook charr (Salvelinus fontinalis Mitchill) to examine four mechanisms that could generate a U-shaped relationship between growth rate (fitness) and the proportion of time spent moving that would favour alternative foraging tactics in the absence of obvious differences in body size and shape. 2. Recently emerged brook charr of similar size and shape inhabit still-water pools along the sides of streams. Some individuals tend to sit and wait for crustacean prey at the pool substrate near the bank, while others tend to search actively for insect prey at the pool surface away from the bank. 3. The ecological mechanisms modelled were (i) the relationship between the rate of prey capture and the proportion of time spent moving is curvilinear, such that net rate of energy gain is maximized at two different levels of activity; (ii) switching between foraging locations and, hence, tactics involves lost opportunity and travel costs; (iii) switching between prey types and, hence, tactics involves a learning cost; and (iv) foraging success is status-dependent with individuals switching between tactics having a lower status than those specializing at a tactic. 4. Singly, no mechanism predicted the U-shaped relationship between growth rate and the proportion of time spent moving. Together, a U-shaped relationship was obtained, indicating that the behavioural diversification and diversifying selection observed in the field may be a consequence of multiple, subtle mechanisms.
摘要
  1. 行为多样化被认为是资源多态性起源的重要初始步骤。我们为幼体溪红点鲑(Salvelinus fontinalis Mitchill)建立了一个模型,以研究四种机制,这些机制可以在生长速率(适合度)与移动时间比例之间产生一种U形关系,这将有利于在体型和形状没有明显差异的情况下出现不同的觅食策略。2. 最近出现的大小和形状相似的溪红点鲑栖息在溪流沿岸的静水池塘中。一些个体倾向于在岸边附近的池塘底部坐等甲壳类猎物,而另一些个体则倾向于在远离岸边的池塘水面积极搜寻昆虫猎物。3. 所模拟的生态机制包括:(i)猎物捕获率与移动时间比例之间的关系是曲线的,使得能量获取的净速率在两个不同的活动水平上达到最大化;(ii)在觅食地点之间切换,进而在策略之间切换,涉及机会损失和移动成本;(iii)在猎物类型之间切换,进而在策略之间切换,涉及学习成本;(iv)觅食成功率取决于个体状态,在不同策略之间切换的个体的状态低于专门采用一种策略的个体。4. 单独来看,没有一种机制能预测生长速率与移动时间比例之间的U形关系。综合起来,则得到了一种U形关系,这表明在野外观察到的行为多样化和多样化选择可能是多种微妙机制共同作用的结果。

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