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Tuning the chemosensory window: A fly's perspective

机译:调整化学感应窗口:苍蝇的视角

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摘要

Accurate perception of chemical signals from the environment is critical for the fitness of most animals. Drosophila melanogaster experiences its chemical environment through families of chemoreceptors that include olfactory receptors, gustatory receptors and odorant binding proteins. Its chemical environment, however, changes during its life cycle and the interpretation of chemical signals is dependent on dynamic social and physical surroundings. Phenotypic plasticity of gene expression of the chemoreceptor repertoire allows flies to adjust the chemosensory window through which they “view” their world and to modify the ensemble of expressed chemoreceptor proteins in line with their developmental and physiological state and according to their needs to locate food and oviposition sites under different social and physical environmental conditions. Furthermore, males and females differ in their expression profiles of chemoreceptor genes. Thus, each sex experiences its chemical environment via combinatorial activation of distinct chemoreceptor ensembles. The remarkable phenotypic plasticity of the chemoreceptor repertoire raises several fundamental questions. What are the mechanisms that translate environmental cues into regulation of chemoreceptor gene expression? How are gustatory and olfactory cues integrated perceptually? What is the relationship between ensembles of odorant binding proteins and odorant receptors? And, what is the significance of co-regulated chemoreceptor transcriptional networks?
机译:准确感知来自环境的化学信号对于大多数动物的健康至关重要。果蝇(Drosophila melanogaster)通过化学感受器家族经历其化学环境,这些化学感受器包括嗅觉受体,味觉受体和增味剂结合蛋白。但是,其化学环境在其生命周期中会发生变化,化学信号的解释取决于动态的社会和自然环境。化学感受器库中基因表达的表型可塑性使果蝇能够调节其“观察”其世界的化学感应窗口,并根据其发育和生理状态并根据其定位食物和食物的需求来修饰表达的化学感受器蛋白的整体。不同社会和自然环境条件下的产卵地点。此外,男性和女性的化学感受器基因表达谱也不同。因此,每个性别都通过不同化学感受器集合的组合激活来经历其化学环境。化学感受器库的显着表型可塑性提出了几个基本问​​题。将环境提示转化为化学感受器基因表达调控的机制是什么?如何在味觉上整合味觉和嗅觉提示?增香剂结合蛋白与增香剂受体之间的关系是什么?而且,共同调控化学感受器转录网络的意义是什么?

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