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首页> 外文期刊>Oikos: A Journal of Ecology >How insects sense olfactory patches - the spatial scaling of olfactory information
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How insects sense olfactory patches - the spatial scaling of olfactory information

机译:昆虫如何感知嗅觉斑块-嗅觉信息的空间尺度

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摘要

When searching for resources in heterogeneous environments, animals must rely on their abilities to detect the resources via their sensory systems. However, variation in the strength of the sensory cue may be mediated by the physical size of the resource patch. Patch detection of insects are often predicted by the scaling of sensory cues to patch size, where visual cues has been proposed to scale proportional to the diameter of the patch. The scaling properties of olfactory cues are, however, virtually unknown. Here, we investigated scaling rules for olfactory information in a gradient of numbers of odour sources, relevant to odour-mediated attraction under field conditions. We recorded moth antennal responses to sex pheromones downwind from pheromone patches and estimated the slope in the scaling relationship between the effective length of the odour plumes and the number of odour sources. These measurements showed that the effective plume length increased proportional to the square root of the number of odour sources. The scaling relationship, as estimated in the field experiment, was then evaluated against field data of the slope in the relationship between trap catch and release rate of chemical attractants for a wide range of insects. This meta-analysis revealed an average slope largely consistent with the estimated scaling relationship between the effective plume length and the number of odour sources. This study is the first to estimate the scaling properties of olfactory cues empiricallyand has implications for understanding and predicting the spatial distributions of insects searching by means of olfactory cues in heterogeneous environments.
机译:在异质环境中寻找资源时,动物必须依靠其能力通过其感觉系统检测资源。但是,感官提示强度的变化可能由资源补丁的物理大小来介导。昆虫的斑块检测通常通过感觉线索到斑块大小的缩放来预测,其中已经提出视觉线索与斑块的直径成比例地缩放。然而,嗅觉提示的缩放性质实际上是未知的。在这里,我们调查了气味信息数量梯度中嗅觉信息的缩放规则,这些规则与野外条件下气味介导的吸引力有关。我们记录了信息素斑对顺风向性信息素的蛾触角反应,并估计了气味羽的有效长度与气味源数量之间的比例关系斜率。这些测量表明,有效羽流长度与气味源数量的平方根成正比。然后,根据田间实验中估计的比例关系,根据斜率的现场数据,对各种昆虫的诱捕物与化学引诱剂释放速率之间的关系进行了评估。荟萃分析显示,平均斜率与有效羽流长度和气味源数量之间的比例关系基本一致。这项研究是第一个凭经验估计嗅觉线索的缩放特性的研究,对理解和预测在异质环境中借助嗅觉线索搜索昆虫的空间分布具有重要意义。

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