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引起食欲下降的厌恶气味剂会下调丽蝇(Phormia regina)嗅觉受体神经元中酪氨酸脱羧酶基因的表达。

Aversive odorant causing appetite decrease downregulates tyrosine decarboxylase gene expression in the olfactory receptor neuron of the blowfly, Phormia regina.

作者信息

Ishida Yuko, Ozaki Mamiko

机构信息

Department of Biology, Graduate School of Science, Kobe University, 1-1 Rokkodai-cho, Nada-ku, Kobe, 657-8501, Japan.

出版信息

Naturwissenschaften. 2012 Jan;99(1):71-5. doi: 10.1007/s00114-011-0865-1. Epub 2011 Nov 20.

DOI:10.1007/s00114-011-0865-1
PMID:22101840
Abstract

In the blowfly Phormia regina, exposure to d-limonene for 5 days during feeding inhibits proboscis extension reflex behavior due to decreasing tyramine (TA) titer in the brain. TA is synthesized by tyrosine decarboxylase (Tdc) and catalyzed into octopamine (OA) by TA ß-hydroxylase (Tbh). To address the mechanisms of TA titer regulation in the blowfly, we cloned Tdc and Tbh cDNAs from P. regina (PregTdc and PregTbh). The deduced amino acid sequences of both proteins showed high identity to those of the corresponding proteins from Drosophila melanogaster at the amino acid level. PregTdc was expressed in the antenna, labellum, and tarsus whereas PregTbh was expressed in the head, indicating that TA is mainly synthesized in the sensory organs whereas OA is primarily synthesized in the brain. d-Limonene exposure significantly decreased PregTdc expression in the antenna but not in the labellum and the tarsus, indicating that PregTdc expressed in the antenna is responsible for decreasing TA titer. PregTdc-like immunoreactive material was localized in the thin-walled sensillum. In contrast, the OA/TA receptor (PregOAR/TAR) was localized to the thick-walled sensillum. The results indicated that d-limonene inhibits PregTdc expression in the olfactory receptor neurons in the thin-walled sensilla, likely resulting in reduced TA levels in the receptor neurons in the antenna. TA may be transferred from the receptor neuron to the specific synaptic junction in the antennal lobe of the brain through the projection neurons and play a role in conveying the aversive odorant information to the projection and local neurons.

摘要

在丽蝇伏蝇中,取食期间暴露于d - 柠檬烯5天会抑制伸吻反射行为,这是由于脑中酪胺(TA)滴度降低所致。TA由酪氨酸脱羧酶(Tdc)合成,并由TAβ - 羟化酶(Tbh)催化生成章鱼胺(OA)。为了探究丽蝇中TA滴度调节的机制,我们从伏蝇中克隆了Tdc和Tbh的cDNA(PregTdc和PregTbh)。这两种蛋白质推导的氨基酸序列在氨基酸水平上与黑腹果蝇相应蛋白质的序列具有高度同一性。PregTdc在触角、唇瓣和跗节中表达,而PregTbh在头部表达,这表明TA主要在感觉器官中合成,而OA主要在脑中合成。暴露于d - 柠檬烯会显著降低触角中PregTdc的表达,但不会降低唇瓣和跗节中的表达,这表明在触角中表达的PregTdc负责降低TA滴度。PregTdc样免疫反应物质定位于薄壁感器中。相反,OA/TA受体(PregOAR/TAR)定位于厚壁感器中。结果表明,d - 柠檬烯抑制薄壁感器中嗅觉受体神经元中PregTdc的表达,可能导致触角中受体神经元内TA水平降低。TA可能通过投射神经元从受体神经元转移至脑触角叶中的特定突触连接,并在将厌恶气味信息传递给投射神经元和局部神经元中发挥作用。

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本文引用的文献

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Naturwissenschaften. 2011 Jul;98(7):635-8. doi: 10.1007/s00114-011-0806-z. Epub 2011 May 21.
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