Marine Biological Association of the United Kingdom, The Laboratory, Citadel Hill, Plymouth, United Kingdom.
Institute of Cell and Developmental Biology, Department of Biology, University of Fribourg, Fribourg, Switzerland.
Bioessays. 2017 Oct;39(10). doi: 10.1002/bies.201700024. Epub 2017 Sep 1.
The evolutionary origin of synapses and neurons is an enigmatic subject that inspires much debate. Non-bilaterian metazoans, both with and without neurons and their closest relatives already contain many components of the molecular toolkits for synapse functions. The origin of these components and their assembly into ancient synaptic signaling machineries are particularly important in light of recent findings on the phylogeny of non-bilaterian metazoans. The evolution of synapses and neurons are often discussed only from a metazoan perspective leaving a considerable gap in our understanding. By taking an integrative approach we highlight the need to consider different, but extremely relevant phyla and to include the closest unicellular relatives of metazoans, the ichthyosporeans, filastereans and choanoflagellates, to fully understand the evolutionary origin of synapses and neurons. This approach allows for a detailed understanding of when and how the first pre- and postsynaptic signaling machineries evolved.
神经突触和神经元的进化起源是一个充满神秘感的主题,激发了很多争论。非两侧对称后生动物,无论是否具有神经元及其最近的亲缘关系,都已经包含了许多用于突触功能的分子工具包的组成部分。鉴于最近关于非两侧对称后生动物系统发育的发现,这些组成部分的起源及其组装成古老的突触信号机制尤其重要。突触和神经元的进化通常仅从后生动物的角度进行讨论,这使得我们的理解存在相当大的差距。通过采用综合方法,我们强调需要考虑不同但极其相关的门,并包括后生动物最接近的单细胞亲属,即鱼孢虫、刺胞动物和领鞭毛虫,以充分理解神经突触和神经元的进化起源。这种方法可以详细了解第一个前突触和后突触信号机制是何时以及如何进化的。