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果蝇中的多巴胺能蘑菇体神经元:模式生物中神经元身份的灵活性?

Dopaminergic mushroom body neurons in Drosophila: Flexibility of neuron identity in a model organism?

机构信息

Institute of Entomology, Biology Centre, Czech Academy of Sciences, Branišovská 31, České Budĕjovice 370 05, Czech Republic; Faculty of Science, University of South Bohemia, Branišovská 31, České Budĕjovice 370 05, Czech Republic.

Institute of Entomology, Biology Centre, Czech Academy of Sciences, Branišovská 31, České Budĕjovice 370 05, Czech Republic.

出版信息

Neurosci Biobehav Rev. 2022 Apr;135:104570. doi: 10.1016/j.neubiorev.2022.104570. Epub 2022 Feb 4.

Abstract

In classical neuroscience, Dale´s principle postulates that neuronal identity is conferred by the specific neurotransmitter that it releases. However, the brain might be more tractable to specific situations regardless of specific specialisation which may contradict this principle. Hence, this constrained approach of how we perceive and study the nervous system must be revisited and revised, specifically by studying the dopaminergic system. We presume a relatively flexible change in the dopaminergic system due to neuronal activity or environmental changes. While the parallel between the reward system of mammals and insects is generally well accepted, herein, we extend the idea that the insect nervous system might also possess incredible plasticity, similar to the mammalian system. In this review, we critically evaluate the available information about the reward system in vertebrates and invertebrates, emphasising the dopaminergic neuronal plasticity, a challenge to the classical Dale's principle. Thus, neurotransmitter switching significantly disrupts the static idea of neural network organisation and suggests greater possibilities for a dynamic response to the current life context of organisms.

摘要

在经典神经科学中,Dale 原则假定神经元的身份是由其释放的特定神经递质决定的。然而,大脑可能更适应特定的情况,而不考虑特定的专业化,这可能与这一原则相矛盾。因此,我们必须重新审视和修改这种我们感知和研究神经系统的受限方法,特别是通过研究多巴胺能系统。我们假设由于神经元活动或环境变化,多巴胺能系统会发生相对灵活的变化。虽然哺乳动物和昆虫的奖励系统之间的平行关系通常被广泛接受,但在这里,我们扩展了这样一种观点,即昆虫神经系统也可能具有与哺乳动物系统相似的令人难以置信的可塑性。在这篇综述中,我们批判性地评估了关于脊椎动物和无脊椎动物奖励系统的现有信息,强调了多巴胺能神经元的可塑性,这对经典的 Dale 原则提出了挑战。因此,神经递质的转换极大地破坏了神经网络组织的静态观念,并为生物体对当前生活环境的动态反应提供了更大的可能性。

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