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鉴定葱蝇触角表达序列标签中的气味结合蛋白基因。

Identification of odorant-binding protein genes from antennal expressed sequence tags of the onion fly, Delia antiqua.

机构信息

Laboratory of Applied Entomology, Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo 113-8657, Japan.

出版信息

Mol Biol Rep. 2011 Mar;38(3):1787-92. doi: 10.1007/s11033-010-0293-x. Epub 2010 Sep 17.

Abstract

Insect odorant-binding proteins (OBPs) are thought to play a crucial role in the chemosensation of hydrophobic molecules such as pheromones and host chemicals. The onion fly, Delia antiqua, is a specialist feeder of Allium plants, and utilizes a host odorant n-dipropyl disulfide as a cue for its oviposition. Because n-dipropyl disulfide is a highly hydrophobic compound, some OBPs might be indispensable for perception of it. However, no OBP gene has been identified in D. antiqua. Here, to obtain the DNA sequences of D. antiqua OBPs, we performed an analysis of antennal expressed sequence tags (ESTs). Among 288 EST clones, eight D. antiqua OBP genes were identified for the first time. Phylogenetic analysis revealed that each D. antiqua OBP gene is more closely related to its Drosophila orthologs than to the other D. antiqua OBP genes, suggesting that these OBP genes had emerged before the divergence of Delia and Drosophila species. All of the eight D. antiqua OBPs are expressed not only in the antennae but also in the legs, suggesting additional roles in the taste perception of non-volatile compounds. These findings serve as an important basis for understanding the molecular mechanisms underlying the host adaptations of D. antiqua.

摘要

昆虫气味结合蛋白(OBP)被认为在疏水性分子(如信息素和宿主化学物质)的化学感觉中发挥着关键作用。葱蝇(Delia antiqua)是葱属植物的专食性昆虫,利用一种宿主气味 n-二丙基二硫醚作为产卵的线索。由于 n-二丙基二硫醚是一种高度疏水性化合物,因此某些 OBP 可能是感知它所必需的。然而,在 D. antiqua 中尚未鉴定出 OBP 基因。在这里,为了获得 D. antiqua OBP 的 DNA 序列,我们对触角表达序列标签(EST)进行了分析。在 288 个 EST 克隆中,首次鉴定出 8 个 D. antiqua OBP 基因。系统发育分析表明,每个 D. antiqua OBP 基因与其果蝇直系同源物的关系比与其他 D. antiqua OBP 基因的关系更密切,这表明这些 OBP 基因在 Delia 和果蝇物种分化之前就已经出现了。这 8 个 D. antiqua OBPs 不仅在触角中表达,而且在腿部中也表达,这表明它们在非挥发性化合物的味觉感知中具有额外的作用。这些发现为理解 D. antiqua 对宿主适应的分子机制提供了重要基础。

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