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A search theory model of patch-to-patch forager movement with application to pollinator-mediated gene flow

机译:补片间觅食运动的搜索理论模型及其在传粉媒介介导的基因流中的应用

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摘要

We present a spatially implicit analytical model of forager movement, designed to address a simple scenario common in nature. We assume minimal depression of patch resources, and discrete foraging bouts, during which foragers fill to capacity. The model is particularly suitable for foragers that search systematically, foragers that deplete resources in a patch only incrementally, and for sit-and-wait foragers, where harvesting does not affect the rate of arrival of forage. Drawing on the theory of job search from microeconomics, we estimate the expected number of patches visited as a function of just two variables: the coefficient of variation of the rate of energy gain among patches, and the ratio of the expected time exploiting a randomly chosen patch and the expected time travelling between patches. We then consider the forager as a pollinator and apply our model to estimate gene flow. Under model assumptions, an upper bound for animal-mediated gene flow between natural plant populations is approximately proportional to the probability that the animal rejects a plant population. In addition, an upper bound for animal-mediated gene flow in any animal-pollinated agricultural crop from a genetically modified (GM) to a non-GM field is approximately proportional to the proportion of fields that are GM and the probability that the animal rejects a field. (c) 2007 Elsevier Ltd. All rights reserved.
机译:我们提出了觅食者运动的空间隐式分析模型,旨在解决自然界中常见的简单情况。我们假设补丁资源的压抑程度最低,并且觅食者会在此期间觅食,以确保觅食者的能力。该模型特别适用于系统地进行搜索的觅食者,仅逐步消耗斑块中的资源的觅食者以及静坐的觅食者,在这种情况下收获不会影响觅食的到达率。基于微观经济学的求职理论,我们估计访问的补丁的预期数量是两个变量的函数:补丁之间能量获取率的变化系数,以及利用随机选择的预期时间的比率补丁和补丁之间的预期旅行时间。然后,我们将觅食者视为传粉者,并应用我们的模型来估计基因流量。在模型假设下,天然植物种群之间动物介导的基因流的上限大约与动物排斥植物种群的概率成正比。此外,在任何动物授粉的农作物中,从遗传修饰的(GM)到非转基因的田地,动物介导的基因流的上限大约与转基因的田地比例和动物拒绝的可能性成正比一个领域。 (c)2007 Elsevier Ltd.保留所有权利。

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