Carlsson Mikael A, Chong Kwok Ying, Daniels Wiltrud, Hansson Bill S, Pearce Tim C
Department of Safety PHarmacology, AstraZeneca R&D Södertälje, SE-151 85 Södertälje, Sweden.
Chem Senses. 2007 Jun;32(5):433-43. doi: 10.1093/chemse/bjm009. Epub 2007 Mar 30.
Natural odors are often complex mixtures of different compounds. These mixtures can be perceived to have qualities that are different from their components. Moreover, components can be difficult to distinguish within a blend, even if those components are identifiable when presented individually. Thus, odor components can interact along the olfactory pathway in a nonlinear fashion such that the mixture is not perceived simply as the sum of its components. Here we investigated odor-evoked changes in Ca2+ concentration to binary blends of plant-related substances in individually identified glomeruli in the moth Spodoptera littoralis. We used a wide range of blend ratios and a range of concentrations below the level at which glomerular responses become saturated. We found no statistically significant cases where the mixture response was greater than both component responses at the same total concentration (synergistic interactions) and no statistically significant cases where the mixture response was less than either component presented individually (suppressive interactions). Therefore, we conclude that, for the plant mixtures studied, information of their components is preserved in the neural representations encoded at the first stage of olfactory processing in this moth species.
天然气味通常是不同化合物的复杂混合物。这些混合物可能会被感知到具有与其成分不同的特性。此外,即使这些成分单独呈现时是可识别的,但在混合体中也可能难以区分。因此,气味成分可沿嗅觉通路以非线性方式相互作用,使得混合物并非简单地被感知为其成分的总和。在此,我们研究了在斜纹夜蛾个体识别的肾小球中,植物相关物质二元混合物诱发的钙离子浓度变化。我们使用了广泛的混合比例以及低于肾小球反应达到饱和水平的一系列浓度。我们未发现统计学上显著的情况,即混合物反应在相同总浓度下大于两种成分反应(协同相互作用),也未发现统计学上显著的情况,即混合物反应小于单独呈现的任何一种成分反应(抑制性相互作用)。因此,我们得出结论,对于所研究的植物混合物,其成分信息在该蛾类物种嗅觉处理第一阶段编码的神经表征中得以保留。