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Identification and expression of odorant-binding proteins of the malaria-carrying mosquitoes Anopheles gambiae and Anopheles arabiensis

机译:携带疟疾的冈比亚按蚊和阿拉伯按蚊的气味结合蛋白的鉴定和表达

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Host preference and blood feeding are restricted to female mosquitoes. Olfaction plays a major role in host-seeking behaviour, which is likely to be associated with a subset of mosquito olfactory genes. Proteins involved in olfaction include the odorant receptors (ORs) and the odorant-binding proteins (OBPs). OBPs are thought to function as a carrier within insect antennae for transporting odours to the olfactory receptors. Here we report the annotation of 32 genes encoding putative OBPs in the malaria mosquito Anopheles gambiae and their tissue-specific expression in two mosquito species of the Anopheles complex; a highly anthropophilic species An. gambiae sensu stricto and an opportunistic, but more zoophilic species, An. arabiensis. RT-PCR shows that some of the genes are expressed mainly in head tissue and a subset of these show highest expression in female heads. One of the genes (agCP1588) which has not been identified as an OBP, has a high similarity (40%) to the Drosophila pheromone-binding protein 4 (PBPRP4) and is only expressed in heads of both An. gambiae and An. arabiensis, and at higher levels in female heads. Two genes (agCP3071 and agCP15554) are expressed only in female heads and agC15554 also shows higher expression levels in An. gambiae. The expression profiles of the genes in the two members of the Anopheles complex provides the first step towards further molecular analysis of the mosquito olfactory apparatus.
机译:宿主的偏爱和采血仅限于雌性蚊子。嗅觉在寻求宿主的行为中起主要作用,这很可能与蚊子嗅觉基因的一个子集有关。嗅觉中涉及的蛋白质包括气味受体(OR)和气味结合蛋白(OBP)。 OBP被认为是在昆虫触角内的载体,用于将气味传输到嗅觉受体。在这里,我们报告在疟疾冈比亚按蚊中32种编码假定OBP的基因的注释,以及它们在两种按蚊复合体蚊子中的组织特异性表达。高度嗜人类的物种冈比亚sensu严格和机会型,但更亲动物的物种An。阿拉伯RT-PCR显示某些基因主要在头部组织中表达,其中一部分在女性头部中表达最高。尚未被鉴定为OBP的基因之一(agCP1588)与果蝇信息素结合蛋白4(PBPRP4)具有高度相似性(40%),仅在两个An的头部表达。冈比亚和安。阿拉伯和女性头部中较高的水平。两个基因(agCP3071和agCP15554)仅在雌性头部表达,而agC15554在An中也显示较高的表达水平。冈比亚在按蚊复合体的两个成员中的基因表达谱为进一步对蚊子嗅觉装置进行分子分析提供了第一步。

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