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A Synergistic Transcriptional Regulation of Olfactory Genes Drives Blood-Feeding Associated Complex Behavioral Responses in the Mosquito Anopheles culicifacies

机译:嗅觉基因的协同转录调节驱动蚊子按蚊的取血相关的复杂行为反应。

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摘要

Decoding the molecular basis of host seeking and blood feeding behavioral evolution/adaptation in the adult female mosquitoes may provide an opportunity to design new molecular strategy to disrupt human-mosquito interactions. Although there is a great progress in the field of mosquito olfaction and chemo-detection, little is known about the sex-specific evolution of the specialized olfactory system of adult female mosquitoes that enables them to drive and manage the complex blood-feeding associated behavioral responses. A comprehensive RNA-Seq analysis of prior and post blood meal olfactory system of An. culicifacies mosquito revealed a minor but unique change in the nature and regulation of key olfactory genes that may play a pivotal role in managing diverse behavioral responses. Based on age-dependent transcriptional profiling, we further demonstrated that adult female mosquito's chemosensory system gradually learned and matured to drive the host-seeking and blood feeding behavior at the age of 5–6 days. A time scale expression analysis of Odorant Binding Proteins (OBPs) unravels unique association with a late evening to midnight peak biting time. Blood meal-induced switching of unique sets of OBP genes and Odorant Receptors (Ors) expression coincides with the change in the innate physiological status of the mosquitoes. Blood meal follows up experiments further provide enough evidence that how a synergistic and concurrent action of OBPs-Ors may drive “prior and post blood meal” associated complex behavioral events. A dominant expression of two sensory appendages proteins (SAP-1 & SAP2) in the legs of An. culicifacies suggests that this mosquito species may draw an extra advantage of having more sensitive appendages than An. stephensi, an urban malarial vector in the Indian subcontinents. Finally, our molecular modeling analysis predicts crucial amino acid residues for future functional characterization of the sensory appendages proteins which may play a central role in regulating multiple behaviors of An. culicifacies mosquito.>SIGNIFICANCE Evolution and adaptation of blood feeding behavior not only favored the reproductive success of adult female mosquitoes but also make them important disease-transmitting vectors. An environmental exposure after emergence may favor the broadly tuned olfactory system of mosquitoes to drive complex behavioral responses. But, how these olfactory derived genetic factors manage female specific “pre and post” blood meal associated complex behavioral responses are not well known. Our findings suggest that a synergistic action of olfactory factors may govern an innate to prime learning strategy to facilitate rapid blood meal acquisition and downstream behavioral activities. A species-specific transcriptional profiling and an in-silico analysis predict that “sensory appendages protein” may be a unique target to design disorientation strategy against the mosquito Anopheles culicifacies.
机译:解码成年雌性蚊子中宿主寻找和供血行为演变/适应的分子基础可能为设计新的破坏人-蚊子相互作用的分子策略提供机会。尽管在蚊香和化学检测领域取得了长足的进步,但对成年雌性蚊子的专业嗅觉系统的性别特异性进化知之甚少,这使它们能够驱动和管理与血液喂养相关的复杂行为反应。 An前后血粉嗅觉系统的全面RNA-Seq分析库蚊蚊子揭示了关键嗅觉基因的性质和调控方面的微小但独特的变化,这些变化可能在管理各种行为反应中起关键作用。基于年龄相关的转录谱,我们进一步证明成年雌性蚊子的化学感觉系统逐渐学习并成熟,以驱动5-6天的宿主寻求宿主和采血行为。气味结合蛋白(OBP)的时间标度表达分析揭示了与傍晚至午夜高峰叮咬时间的独特关联。血粉诱导的独特的OBP基因集和气味受体(Ors)表达的转换与蚊子先天生理状态的变化相吻合。血粉跟进实验进一步提供了足够的证据,证明OBPs-Ors的协同作用和同时作用如何驱动“血粉前后”相关的复杂行为事件。 An的腿中两个感觉附属蛋白(SAP-1&SAP2)的主要表达。有趣的是,这种蚊子可能比An具有更多的敏感附件。 stephensi,印度次大陆的城市疟疾媒介。最后,我们的分子模型分析预测了重要的氨基酸残基,这些残基对于未来感官附属蛋白质的功能表征可能在调节An的多种行为中起着核心作用。 >意义。血液喂养行为的进化和适应不仅有利于成年雌性蚊子的繁殖成功,而且使其成为重要的疾病传播媒介。出苗后暴露于环境中可能会有利于广泛调节的蚊子嗅觉系统,以推动复杂的行为反应。但是,这些嗅觉衍生的遗传因素如何处理女性特定的“前后”血粉相关的复杂行为反应尚不清楚。我们的研究结果表明,嗅觉因素的协同作用可能会控制先天到初级的学习策略,以促进快速的血粉获取和下游行为活动。特定物种的转录谱和计算机模拟分析预测,“感觉附属蛋白”可能是设计针对蚊子按蚊的迷失取向策略的独特目标。

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