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家蚕对信息素行为反应的气溶胶修饰。

Aerosol Alteration of Behavioral Response to Pheromone in Bombyx mori.

机构信息

Insect Biology Research Institute, University of Tours - CNRS, Tours, France.

Biomaterials Department, Max Planck Institute of Colloids and Interfaces, Potsdam, Germany.

出版信息

J Chem Ecol. 2023 Aug;49(7-8):353-362. doi: 10.1007/s10886-023-01431-4. Epub 2023 Apr 29.

Abstract

Because of the complexity to study them, aerosols have been neglected in nearly all studies on olfaction, especially studies dealing with odor capture. However, aerosols are present in large quantities in the atmosphere and have the physico-chemical ability to interact with odor molecules, in particular the many pheromones with low volatility. We submitted male moths of Bombyx mori to bombykol puffs, the main fatty alcohol component of its sex pheromone, depending on whether the air is free of aerosols, charged with ambient concentration aerosols or supplemented with aqueous aerosols and recorded their arousal behavior. Aerosols and pheromone do interact consistently over all experiments and moths react better in low aerosol-concentration conditions. We propose four hypotheses for explaining this impediment, the two most likely resorting to competition between odor molecules and aerosols for the olfactory pores and postulate a reversal to a positive impact of aerosols on communication, depending on the particular physico-chemical properties of the multiphasic interaction. Studying the partitioning between gas and particulate phases in the transport and reception of odors is key for advancing the chemico-physical understanding of olfaction.

摘要

由于研究它们的复杂性,气溶胶在几乎所有关于嗅觉的研究中都被忽视了,特别是在涉及气味捕捉的研究中。然而,气溶胶在大气中大量存在,并且具有与气味分子相互作用的物理化学能力,特别是许多挥发性低的信息素。我们将雄性家蚕置于 Bombyx mori 的 bombykol 烟雾中,这是其性信息素的主要脂肪醇成分,取决于空气是否没有气溶胶、充满环境浓度的气溶胶或补充水气溶胶,并记录它们的觉醒行为。在所有实验中,气溶胶和信息素始终相互作用,并且在低气溶胶浓度条件下,飞蛾的反应更好。我们提出了四个解释这种障碍的假设,其中两个最有可能归因于气味分子和气溶胶之间为争夺嗅觉孔而产生的竞争,并假设气溶胶对通讯的影响发生逆转,这取决于多相相互作用的特定物理化学性质。研究气味传输和接收过程中气体相与颗粒相之间的分配对于推进嗅觉的化学物理理解是关键。

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