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基因组和EST分析以及一个在昆虫化学感受中具有推定功能的基因家族的表达。

Genome and EST analyses and expression of a gene family with putative functions in insect chemoreception.

作者信息

Zhou Jing-Jiang, Kan Yunchao, Antoniw John, Pickett John A, Field Linda M

机构信息

Biological Chemistry Division, Rothamsted Research, Harpenden, AL5 2JQ, UK.

出版信息

Chem Senses. 2006 Jun;31(5):453-65. doi: 10.1093/chemse/bjj050. Epub 2006 Mar 31.

DOI:10.1093/chemse/bjj050
PMID:16581978
Abstract

Odorant-binding proteins (OBPs) are thought to be responsible for the transport of semiochemicals across hydrophobic interfaces to olfactory receptors. In insects, a second class of OBPs with four conserved cysteines has been variously named as sensory appendage proteins, olfactory segment-D proteins, and chemosensory proteins (CSPs). The physiological functions of these proteins have remained elusive. Here we report a comprehensive survey of both genome and expressed sequence tags (EST) databases. This showed that CSPs are apparently only present in the phylum, Arthropoda, and in two subphyla, Crustacea and Uniramia. This is the first report of a putative CSP in Crustacea and suggests that the origin of these genes predates the divergence of Uniramia and Crustacea. For the Uniramia, we identified 74 new genes encoding putative CSPs of insect species from 10 different orders. Using tissue-specific EST libraries, we have examined the relative expression of putative CSP genes in many tissues from 22 insect species suggesting that the genes are expressed widely. One Drosophila CSPs is expressed sixfold higher in head than other CSPs. One Bombyx mori CSPs was found at a very high level in pheromone gland, and for the first time, six CSPs were identified in B. mori compound eyes. The different frequencies of CSP transcripts were observed between solitary and gregarious EST libraries of Locusta migratoria.

摘要

气味结合蛋白(OBPs)被认为负责将信息化学物质跨疏水界面运输至嗅觉受体。在昆虫中,一类具有四个保守半胱氨酸的第二类OBPs有多种命名,如感觉附器蛋白、嗅觉节段-D蛋白和化学感受蛋白(CSPs)。这些蛋白质的生理功能一直难以捉摸。在此,我们报告了对基因组和表达序列标签(EST)数据库的全面调查。结果表明,CSPs显然仅存在于节肢动物门以及两个亚门,即甲壳亚门和单枝亚门中。这是甲壳亚门中假定CSP的首次报道,表明这些基因的起源早于单枝亚门和甲壳亚门的分化。对于单枝亚门,我们从10个不同目鉴定了74个编码昆虫假定CSP的新基因。利用组织特异性EST文库,我们检测了22种昆虫许多组织中假定CSP基因的相对表达,表明这些基因广泛表达。一种果蝇CSP在头部的表达比其他CSP高6倍。在家蚕的性信息素腺中发现一种家蚕CSP的表达水平非常高,并且首次在家蚕复眼中鉴定出6种CSP。在飞蝗的独居和群居EST文库之间观察到CSP转录本的不同频率。

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