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On the Independent Origins of Complex Brains and Neurons

机译:关于复杂的大脑和神经元的独立起源

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摘要

Analysis of the origin and evolution of neurons is crucial for revealing principles of organization of neural circuits with unexpected implications for genomic sciences, biomedical applications and regenerative medicine. This article presents an overview of some controversial ideas about the origin and evolution of neurons and nervous systems, focusing on the independent origin of complex brains and possible independent origins of neurons. First, earlier hypotheses related to the origin of neurons are summarized. Second, the diversity of nervous systems and convergent evolution of complex brains in relation to current views about animal phylogeny is discussed. Third, the lineages of molluscs and basal metazoans are used as illustrated examples of multiple origins of complex brains and neurons. Finally, a hypothesis about the independent origin of complex brains, centralized nervous systems and neurons is outlined. Injury-associated mechanisms leading to secretion of signal peptides (and related molecules) can be considered as evolutionary predecessors of inter-neuronal signaling and the major factors in the appearance of neurons in the first place.
机译:分析神经元的起源和演化对于揭示神经回路的组织原理至关重要,这对基因组科学,生物医学应用和再生医学具有意想不到的影响。本文概述了有关神经元和神经系统起源和进化的一些有争议的想法,重点是复杂大脑的独立起源和神经元的可能独立起源。首先,总结了与神经元起源有关的早期假设。其次,讨论了与当前有关动物系统发育的观点相关的神经系统的多样性和复杂大脑的趋同进化。第三,软体动物和基底后生动物的血统被用作复杂大脑和神经元的多种起源的图解实例。最后,概述了关于复杂大脑,中枢神经系统和神经元的独立起源的假设。导致信号肽(及相关分子)分泌的损伤相关机制可被认为是神经元间信号的进化先驱,并且首先是神经元出现的主要因素。

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