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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Flying the Fly: Long-range Flight Behavior of Drosophila melanogaster to Attractive Odors
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Flying the Fly: Long-range Flight Behavior of Drosophila melanogaster to Attractive Odors

机译:飞行:果蝇向诱人的气味的远程飞行行为

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The fruit fly, Drosophila melanogaster Meigen (Diptera: Drosophilidae), is a model for how animals sense, discriminate, and respond to chemical signals. However, with D. melanogaster our knowledge of the behavioral activity of olfactory receptor ligands has relied largely on close-range attraction, rather than on long-range orientation behavior. We developed a flight assay to relate chemosensory perception to behavior. Headspace volatiles from vinegar attracted 62% of assayed flies during a 15-min experimental period. Flies responded irrespective of age, sex, and mating state, provided they had been starved. To identify behaviorally relevant chemicals from vinegar, we compared the responses to vinegar and synthetic chemicals. Stimuli were applied by a piezoelectric sprayer at known and constant release rates. Re-vaporized methanol extracts of Super Q-trapped vinegar volatiles attracted as many flies as vinegar. The main volatile component of vinegar, acetic acid, elicited significant attraction as a single compound. Two other vinegar volatiles, 2-phenyl ethanol and acetoin, produced a synergistic effect when added to acetic acid. Geosmin, a microbiological off-flavor, diminished attraction to vinegar. This wind tunnel assay based on a conspicuous and unambiguous behavioral response provides the necessary resolution for the investigation of physiologically and ecologically relevant odors and will become an essential tool for the functional analysis of the D. melanogaster olfactory system.
机译:果蝇果蝇(Drosophila melanogaster Meigen)(双翅目:Drosophilidae)是动物如何感测,区分和响应化学信号的模型。然而,对于D. melanogaster,我们对嗅觉受体配体的行为活性的了解主要取决于近距离吸引,而不是远距离定向行为。我们开发了一种将化学感应知觉与行为联系起来的飞行试验。在15分钟的实验时间内,醋中的顶空挥发物吸引了62%的被测果蝇。只要果蝇饿了,果蝇的反应无论年龄,性别和交配状态如何。为了确定醋中与行为相关的化学物质,我们比较了对醋和合成化学物质的反应。通过压电喷雾器以已知且恒定的释放速率施加刺激。超级Q捕获的醋挥发物的再蒸发甲醇提取物吸引的果蝇与醋一样多。醋的主要挥发性成分乙酸作为单一化合物引起了巨大的吸引力。当添加到乙酸中时,另外两种醋挥发物2-苯基乙醇和乙酰丁酸产生了协同作用。微生物异味Geosmin减少了对醋的吸引力。这种基于明显和明确行为响应的风洞测定法为研究生理和生态相关气味提供了必要的解决方案,并将成为黑腹果蝇嗅觉系统功能分析的重要工具。

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