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Odour of limonene affects feeding behaviour in the blowfly, Phormia regina.

机译:柠檬烯的气味会影响粉虱(Phormia regina)的食虫行为。

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摘要

Experiences of odours at meals are thought to affect food preference in many animals. To study appetite modulation by odours, we established a new experimental system based on the modification of a previous method, where flies fed sucrose flavoured with D-limonene subsequently showed reduced appetite to plain sucrose. In this new experimental system, a fly population was divided into two groups: (1) the "simultaneous" group of flies was exposed to D-limonene and sucrose simultaneously for 10 min, and (2) the "separate" group of flies was exposed to sucrose alone for 10 min, and 1h later, to limonene for 10 min. The appetite of flies in the "separate" group for sucrose was unaffected by the experiment, but the appetite of flies in the "simultaneous" group was significantly decreased, and this effect lasted for > or = 3 days. To investigate if this appetite modulation by D-limonene was based on long-term memory formation (protein synthesis), we examined the effects of the protein synthesis inhibitor, cycloheximide. Injection of cycloheximide 1h after exposure to limonene and sucrose inhibited the appetite suppression in the "simultaneous" group of flies. In addition, to exclude the possibility that D-limonene exerted its effect through taste, rather than odour, we examined the effect of removing of the olfactory organs, antennae and maxillary palps on appetite modulation by D-limonene. When the olfactory organs were removed, no reduction in appetite was observed in the flies in the "simultaneous" group, indicating olfaction. In our new and effective appetite-modulation system for flies, modulation of appetite by olfactory detection of D-limonene was shown.
机译:人们认为,进餐时闻到的气味会影响许多动物的食物偏爱。为了研究气味对食欲的调节作用,我们基于对先前方法的改进,建立了一个新的实验系统,在该系统中,用D-柠檬烯调味的蔗糖喂食的果蝇随后食欲降低至普通蔗糖。在这个新的实验系统中,果蝇种群被分为两组:(1)“同时”的果蝇同时暴露于D-柠檬烯和蔗糖10分钟,(2)“单独的”果蝇群体是果蝇。单独暴露于蔗糖10分钟,然后1小时后暴露于柠檬烯10分钟。蔗糖“单独”组中果蝇的食欲不受实验的影响,但“同时”组中果蝇的食欲显着降低,并且这种效果持续≥3天。为了研究D-柠檬烯对这种食欲的调节是否基于长期记忆形成(蛋白质合成),我们检查了蛋白质合成抑制剂环己酰亚胺的作用。暴露于柠檬烯和蔗糖后1h注射环己酰亚胺可抑制“同时”果蝇的食欲。此外,为了排除D-柠檬烯通过味道而不是气味发挥作用的可能性,我们研究了去除嗅觉器官,触角和上颌触觉对D-柠檬烯调节食欲的影响。当去除嗅觉器官时,在“同时”组的果蝇中没有观察到食欲降低,表明嗅觉。在我们新颖有效的果蝇食欲调节系统中,显示了通过嗅觉检测D-柠檬烯来调节食欲。

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