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Breakdown of the ideal free distribution under conditions of severe and low competition

机译:在严重和低竞争条件下理想的自由分配故障

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Under the ideal free distribution (IFD), the number of organisms competing for a resource at different sites is proportional to the resource distribution among sites. The ideal free distribution of competitors in a heterogeneous environment often predicts habitat matching, where the relative number of individuals using any two patches matches the relative availability of resources in those same two patches. If a resource is scarce, access might be restricted to individuals with high resource holding potential, resulting in deviation from the IFD. The distribution of animals may also deviate from the IFD in the case of resource abundance, when social attraction or preference for specific locations rather than competition may determine distribution. While it was originally developed to explain habitat choice, we apply the habitat matching rule to microscale foraging decisions. We show that chickens feeding from two nondepleting feeders distribute proportionally to feeder space under intermediate levels of competition. However, chicken distribution between the feeders deviates from the IFD when feeder space is limited and competition high. Further, despite decreasing aggression with increasing feeder space, deviation from IFD is also observed under an excess supply of feeder space, indicating different mechanisms responsible for deviations from the IFD. Besides demonstrating IFD sensitivity to competition, these findings highlight IFD's potential as a biological basis for determining minimal resource requirements in animal housing.Significance statementThe ideal free distribution (IFD) predicts how animals ought to distribute themselves within a habitat in order to maximize their payoff. Recent studies, however, have questioned the validity of the IFD concept following anomalous results. We studied the IFD in chickens by systematically varying the amount and distribution of space at two feed troughs. We show that when tested over a sufficiently large range, the distribution of birds depends on the overall resource availability. Furthermore, behavioral data suggest that distinctly different mechanisms account for deviations from the IFD at shortage and excess supply of feeder space, respectively.
机译:在理想自由分布(IFD)下,不同地点争夺资源的生物体数量与地点间的资源分布成正比。在异质环境中,竞争对手的理想自由分布通常可以预测栖息地匹配,即使用任意两个斑块的个体的相对数量与这两个斑块中资源的相对可用性相匹配。如果资源稀缺,可能会限制拥有高资源潜力的个人使用,从而导致偏离IFD。在资源丰富的情况下,当社会吸引力或对特定地点的偏好而非竞争可能决定分布时,动物的分布也可能偏离IFD。虽然它最初是用来解释栖息地选择的,但我们将栖息地匹配规则应用于微型觅食决策。我们表明,在中等水平的竞争下,从两个非退化饲养者饲养的鸡按比例分布到饲养空间。然而,当饲养空间有限且竞争激烈时,饲养者之间的鸡分布偏离了IFD。此外,尽管随着馈线空间的增加,攻击性降低,但在馈线空间供应过剩的情况下,也观察到偏离IFD的情况,这表明偏离IFD的机制不同。除了证明IFD对竞争的敏感性外,这些发现还强调了IFD作为确定动物饲养最低资源需求的生物学基础的潜力。意义陈述理想自由分配(IFD)预测动物应该如何在栖息地内分配自己,以最大限度地获得回报。然而,最近的研究质疑了异常结果后IFD概念的有效性。我们通过系统地改变两个饲料槽的数量和空间分布来研究鸡的IFD。我们表明,当在足够大的范围内进行测试时,鸟类的分布取决于总体资源可用性。此外,行为数据表明,明显不同的机制分别解释了喂食空间供应不足和过剩时与IFD的偏差。

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