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印度短鼻果蝠()的气味辨别学习:嗅球、杏仁核和海马中、和 PP-1 的差异表达。

Odour discrimination learning in the Indian greater short-nosed fruit bat (): differential expression of , and PP-1 in the olfactory bulb, amygdala and hippocampus.

机构信息

Behavioural Neuroscience Laboratory, Department of Animal Science, School of Life Sciences, Bharathidasan University, Tiruchirappalli 620024, India.

Museum and Institute of Zoology, Polish Academy of Sciences, Wilcza 64, 00-679 Warszawa, Poland.

出版信息

J Exp Biol. 2018 Jun 15;221(Pt 12):jeb175364. doi: 10.1242/jeb.175364.

Abstract

Activity-dependent expression of immediate-early genes (IEGs) is induced by exposure to odour. The present study was designed to investigate whether there is differential expression of IEGs (, ) in the brain region mediating olfactory memory in the Indian greater short-nosed fruit bat, We assumed that differential expression of IEGs in different brain regions may orchestrate a preference odour (PO) and aversive odour (AO) memory in We used preferred (0.8% w/w cinnamon powder) and aversive (0.4% w/v citral) odour substances, with freshly prepared chopped apple, to assess the behavioural response and induction of IEGs in the olfactory bulb, hippocampus and amygdala. After experiencing PO and AO, the bats initially responded to both, later only engaging in feeding bouts in response to the PO food. The expression pattern of EGR-1 and c-Fos in the olfactory bulb, hippocampus and amygdala was similar at different time points (15, 30 and 60 min) following the response to PO, but was different for AO. The response to AO elevated the level of c-Fos expression within 30 min and reduced it at 60 min in both the olfactory bulb and the hippocampus, as opposed to the continuous increase noted in the amygdala. In addition, we tested whether an epigenetic mechanism involving protein phosphatase-1 (PP-1) acts on IEG expression. The observed PP-1 expression and the level of unmethylated/methylated promoter revealed that expression is possibly controlled by odour-mediated regulation of PP-1. These results in turn imply that the differential expression of in the hippocampus and amygdala may contribute to olfactory learning and memory in .

摘要

活性依赖的即时早期基因(IEG)表达是由暴露于气味引起的。本研究旨在探讨在介导嗅觉记忆的大脑区域中是否存在 IEG(,)的差异表达在印度大短鼻果蝠中,我们假设不同脑区 IEG 的差异表达可能协调偏好气味(PO)和厌恶气味(AO)记忆在中,我们使用了新鲜制备的切碎苹果来评估行为反应和嗅觉球、海马和杏仁核中 IEG 的诱导。在经历了 PO 和 AO 后,蝙蝠最初对两者都有反应,后来只在对 PO 食物有反应时才进行进食。在对 PO 做出反应后的不同时间点(15、30 和 60 分钟),EGR-1 和 c-Fos 在嗅觉球、海马和杏仁核中的表达模式相似,但对 AO 的表达模式不同。AO 的反应在 30 分钟内提高了 c-Fos 在嗅觉球和海马中的表达水平,而在 60 分钟时降低了表达水平,而在杏仁核中则持续增加。此外,我们测试了是否涉及蛋白磷酸酶-1(PP-1)的表观遗传机制作用于 IEG 表达。观察到的 PP-1 表达和未甲基化/甲基化启动子水平表明,表达可能受气味介导的 PP-1 调节控制。这些结果反过来又表明,海马和杏仁核中 IEG 的差异表达可能有助于。

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