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Characteristic Response to Chemosensory Signals in GABAergic Cells of Medial Amygdala Is Not Driven by Main Olfactory Input

机译:主要嗅觉输入并不驱动杏仁核内侧GABA能细胞对化学感应信号的特征响应。

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摘要

Chemosensory stimuli from same species (conspecific) and different species (heterospecific) elicit categorically different immediate-early gene (IEG) response patterns in medial amygdala in male hamsters and mice. All heterospecific stimuli activate anterior medial amygdala (MeA) but only especially salient heterospecific stimuli, such as those from predators activate posterior medial amygdala (MeP). We previously reported that characteristic patterns of response in separate populations of cells in MeA and MeP distinguish between different conspecific stimuli. Both gamma aminobutyric acid (GABA)-immunoreactive (ir) cells and GABA-receptor-ir cells make this distinction. Here, using zinc sulfate lesions of the main olfactory epithelium, we show evidence that main olfactory input does not contribute to the characteristic patterns of response in GABA-ir cells of male hamster amygdala, either for conspecific or heterospecific stimuli. Some GABAergic cells are output neurons carrying information from medial amygdala to behavioral executive regions of basal forebrain. Thus, the differential response to different conspecific signals can lead to differential activation of downstream circuits based on nonolfactory input. Finally, we show that an intact vomeronasal organ is necessary and sufficient to produce the characteristic patterns of response to conspecific and heterospecific chemosensory stimuli in hamster medial amygdala. Although main olfactory input may be critical in species with less prominent vomeronasal input for equivalent medial amygdala responses, work presented here suggests that hamster medial amygdala uses primarily vomeronasal input to discriminate between important unlearned conspecific social signals, to distinguish them from the social signals of other species, and may convey that information to brain circuits eliciting appropriate social behavior.
机译:来自相同物种(同种)和不同物种(异种)的化学感觉刺激在雄性仓鼠和小鼠的内侧杏仁核中引起明显不同的立即早期基因(IEG)反应模式。所有异种特异性刺激均激活前内侧杏仁核(MeA),但仅特别是显着的异种特异性刺激,例如来自食肉动物的那些,均激活后内侧杏仁核(MeP)。我们以前曾报道过,在MeA和MeP中,不同细胞群体中的响应特征模式可以区分不同的同种刺激。 γ-氨基丁酸(GABA)免疫反应性(ir)细胞和GABA受体-ir细胞均具有这种区别。在这里,使用主要嗅上皮的硫酸锌损伤,我们显示证据表明,主要嗅觉输入对同种或异种刺激的雄性仓鼠杏仁核的GABA-ir细胞无响应。一些GABA能细胞是输出的神经元,将信息从杏仁核内侧传递到基底前脑的行为执行区。因此,对不同同种信号的差分响应可导致基于非嗅觉输入的下游电路的差分激活。最后,我们表明完整的犁鼻器器官是必要的,并且足以产生对仓鼠内侧杏仁核中的同种和异种化学感应刺激的响应的特征模式。尽管主要嗅觉输入对于同等的杏仁核内侧反应在不太突出的犁鼻输入中可能很关键,但此处提出的工作表明仓鼠内侧杏仁核主要使用犁鼻输入来区分重要的未学到的同种社会信号,以将其与其他社交信号区分开来。物种,并可能将该信息传达到引发适当社交行为的大脑回路。

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