Selective receptor neurone responses to E-beta-ocimene, beta-myrcene, E,E-alpha-farnesene and homo-farnesene in the moth Heliothis virescens, identified by gas chromatography linked to electrophysiology.

T Røstelien, A K Borg-Karlson, H Mustaparta
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引用次数: 54

Abstract

An important question in olfaction is for which odorants receptor neurones have evolved. In the present study, olfactory receptor neurones on the antennae of the tobacco budworm moth Heliothis virescens were screened for sensitivity to naturally occurring plant-produced volatiles by the use of gas chromatography linked to electrophysiology. Volatiles of host as well as non-host plants collected by headspace techniques were used for stimulating the neurones, sequentially via two columns, one polar and one nonpolar installed in parallel in the gas chromatograph. Three types of neurones presented in this paper responded to one, two or three compounds for which the retention times were determined in both column types. The chemical structures of the active components were determined on the basis of mass spectrometry linked to gas chromatography, indicating E-beta-ocimene and beta-myrcene as stimulants for neurone type 1, E,E-alpha-farnesene for neurone type 2 and homo-farnesene for neurone type 3. Re-testing authentic materials verified the identifications for the type 1 neurones. The results demonstrate a high specificity for the three types of neurones by strong responses to one or two structurally similar compounds out of hundreds present in a large variety of plants. The study exemplifies plant odour detection by narrowly tuned receptor neurones in a polyphagous moth species.

气相色谱与电生理学相结合鉴定了Heliothis virescens蛾对E- β -香芹烯,β -月桂烯,E,E- α -香芹烯和同型香芹烯的选择性受体神经元反应。
嗅觉中的一个重要问题是气味受体神经元是为了什么而进化的。在本研究中,利用电生理相色谱法筛选了烟草芽蛾触角上的嗅受体神经元对天然植物产生的挥发物的敏感性。利用顶空技术收集的寄主植物和非寄主植物的挥发物,通过平行安装在气相色谱仪上的两根极性和非极性柱依次刺激神经元。本文提出的三种类型的神经元对一种,两种或三种化合物作出反应,其中保留时间在两种柱类型中确定。通过气相色谱联用质谱法测定了活性成分的化学结构,表明E- -辛烯和- -月桂烯是1型神经元的兴奋剂,E,E- α -法尼烯是2型神经元的兴奋剂,同质法尼烯是3型神经元的兴奋剂。重新测试真实材料证实了对1型神经元的识别。结果表明,通过对存在于大量植物中的数百种结构相似的化合物中的一种或两种产生强烈反应,这三种类型的神经元具有高度特异性。该研究举例说明了一种多食性飞蛾物种通过狭窄调谐的受体神经元来检测植物气味。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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