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鸡胚中即刻早期基因表达的自发和光诱导的偏侧化。

Spontaneous and light-induced lateralization of immediate early genes expression in domestic chicks.

机构信息

Center for Mind/Brain Sciences, University of Trento, Corso Bettini 31, 38068 Rovereto (TN), Italy.

出版信息

Behav Brain Res. 2019 Aug 5;368:111905. doi: 10.1016/j.bbr.2019.111905. Epub 2019 Apr 13.

Abstract

Exposure of domestic chicks' eggs to light during embryo incubation stimulates asymmetrically the two eye-systems, reaching selectively the right eye (left hemisphere) and inducing asymmetries at the behavioral and neural level. Surprisingly, though, some types of lateralization have been observed also in dark incubated chicks, especially at the behavioral level. Here we investigate the mechanisms subtending the development of lateralization, in the presence and in the absence of embryonic light exposure. We measured the baseline level of expression for the immediate early gene product c-Fos, used as an indicator of the spontaneous level of neural activity and plasticity in four areas of the two hemispheres (preoptic area, septum, hippocampus and intermediate medial mesopallium). Additional DAPI staining measured overall cell density (regardless of c-Fos expression), ruling out any confound due to underlying asymmetries in cell density between the hemispheres. In different brain areas, c-Fos expression was lateralized either in light- (septum) or in dark-incubated chicks (preoptic area). Light exposure increased c-Fos expression in the left hemisphere, suggesting that c-Fos expression could participate to the known effects of light stimulation on brain asymmetries. Interestingly, this effect was visible few days after the end of the light exposure, revealing a delayed effect of light exposure on c-Fos baseline expression in brain areas outside the visual pathways. In the preoptic area of dark incubated chicks, we found a rightward bias for c-Fos expression, revealing that lateralization of the baseline level of activity and plasticity is present in the developing brain also in the absence of light exposure.

摘要

在胚胎孵化过程中,将家鸡的鸡蛋暴露在光线下会刺激两个眼系统不对称地发育,选择性地刺激右眼(左半球),并在行为和神经水平上引起不对称。然而,令人惊讶的是,在黑暗孵化的小鸡中也观察到了一些类型的偏侧化,尤其是在行为水平上。在这里,我们研究了在存在和不存在胚胎光照的情况下,偏侧化发育的机制。我们测量了四个半球区域(视前区、隔区、海马体和中间内侧中脑)中即时早期基因产物 c-Fos 的表达基线水平,作为神经活动和可塑性自发水平的指标。额外的 DAPI 染色测量了整个细胞密度(与 c-Fos 表达无关),排除了由于半球之间细胞密度的潜在不对称而导致的任何混淆。在不同的大脑区域,c-Fos 的表达在光照(隔区)或黑暗孵化的小鸡(视前区)中存在偏侧化。光照增加了左半球的 c-Fos 表达,表明 c-Fos 表达可能参与了光照刺激对大脑不对称性的已知影响。有趣的是,这种效应在光照结束几天后可见,揭示了光照对视觉通路外的大脑区域的 c-Fos 基础表达的延迟影响。在黑暗孵化的小鸡的视前区,我们发现 c-Fos 表达存在向右的偏差,这表明在没有光照的情况下,活动和可塑性的基线水平的偏侧化也存在于发育中的大脑中。

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