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家蚕雌性特异性气味反应的分子基础。

Molecular basis of female-specific odorant responses in Bombyx mori.

作者信息

Anderson Alisha R, Wanner Kevin W, Trowell Stephen C, Warr Coral G, Jaquin-Joly Emmanuelle, Zagatti Pierre, Robertson Hugh, Newcomb Richard D

机构信息

CSIRO Food Futures Flagship & CSIRO Entomology, Black Mountain Laboratories, Canberra, Australia.

出版信息

Insect Biochem Mol Biol. 2009 Mar;39(3):189-97. doi: 10.1016/j.ibmb.2008.11.002. Epub 2008 Dec 7.

Abstract

Males and females of many moth species exhibit important differences in sexual behaviours. Much research in this field has focused on the male-specific behaviour, electrophysiology and molecular biology of sex pheromone reception. Female-specific behaviours have been less well studied although, like male-specific behaviours, they could provide opportunities for intervention and management of lepidopteran pests. Previously, we identified genes encoding putative odorant receptors (ORs) from the genome of the silkworm, Bombyx mori, some of which have higher levels of steady-state transcript in the antennae of adult females compared with males. We have identified the full-length cDNA sequences of some of these ORs and described a novel OR that is part of a female-biased clade. Using expression in Sf9 cells and a calcium-imaging assay, we tested a range of compounds for their ability to activate the most highly female-biased ORs, BmOR19, BmOR30, BmOR45 and BmOR47. BmOR19 responds to linalool, while BmOR45 and BmOR47 respond to benzoic acid > 2-phenylethanol > benzaldehyde. No activating ligands were found for BmOR30. RNA in situ hybridisation experiments reveal that BmOR19 is expressed in female olfactory sensory neurons that are co-located in the same sensilla as a second ORN expressing BmOR45 and/or BmOR47. Taken together the activity and expression of these receptors is likely explanatory of the observed electrophysiology of long sensilla trichoidea of female B. mori, previously shown to each contain one terpene (BmOR19) and one benzoic acid (BmOR45, BmOR47) sensory neuron. Plant volatiles such as linalool, benzoic acid, 2-phenylethanol and benzaldehyde are oviposition cues for females of some moths. These compounds have also been found in male-produced pheromone blends extracted from the hair pencils of many noctuid species. Hair pencil structures have not previously been reported for B. mori, but we have found hair pencil-like structures in adult male B. mori that are absent in female moths. It is proposed that BmOR19, BmOR45 and BmOR47 account for some of the female-specific odorant responses in B. mori, such as oviposition and/or detection of an as yet unidentified male-produced sex pheromone.

摘要

许多蛾类的雄性和雌性在性行为上表现出重要差异。该领域的许多研究都集中在雄性特异性行为、性信息素接收的电生理学和分子生物学上。尽管雌性特异性行为与雄性特异性行为一样,可为鳞翅目害虫的干预和管理提供机会,但对其研究较少。此前,我们从家蚕基因组中鉴定出编码假定气味受体(ORs)的基因,其中一些基因在成年雌性触角中的稳态转录水平高于雄性。我们已经鉴定出其中一些ORs的全长cDNA序列,并描述了一个属于雌性偏好分支的新型OR。利用在Sf9细胞中的表达和钙成像分析,我们测试了一系列化合物激活雌性偏好程度最高的ORs(BmOR19、BmOR30、BmOR45和BmOR47)的能力。BmOR19对芳樟醇有反应,而BmOR45和BmOR47对苯甲酸>2-苯乙醇>苯甲醛有反应。未发现能激活BmOR30的配体。RNA原位杂交实验表明,BmOR19在雌性嗅觉感觉神经元中表达,这些神经元与表达BmOR45和/或BmOR47的另一个嗅觉感觉神经元位于同一感器中。这些受体的活性和表达可能解释了此前观察到的家蚕雌性长刚毛感器的电生理学现象,此前已表明每个长刚毛感器都包含一个萜烯(BmOR19)和一个苯甲酸(BmOR45、BmOR47)感觉神经元。植物挥发物如芳樟醇、苯甲酸、2-苯乙醇和苯甲醛是一些蛾类雌性的产卵线索。这些化合物也在从许多夜蛾科物种的毛笔中提取的雄性产生的性信息素混合物中被发现。此前尚未报道家蚕有毛笔结构,但我们在成年雄性家蚕中发现了类似毛笔的结构,而雌性蛾中没有。有人提出,BmOR19、BmOR45和BmOR47解释了家蚕中一些雌性特异性气味反应,如产卵和/或检测尚未鉴定的雄性产生的性信息素。

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