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Mapping of neuropeptide Y expression in Octopus Octopus Octopus brains

机译:章鱼章鱼章鱼大脑中神经肽Y表达的映射

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摘要

Abstract Neuropeptide Y (NPY) is an evolutionarily conserved neurosecretory molecule implicated in a diverse complement of functions across taxa and in regulating feeding behavior and reproductive maturation in Octopus . However, little is known about the precise molecular circuitry of NPY‐mediated behaviors and physiological processes, which likely involve a complex interaction of multiple signal molecules in specific brain regions. Here, we examined the expression of NPY throughout the Octopus central nervous system. The sequence analysis of Octopus NPY precursor confirmed the presence of both, signal peptide and putative active peptides, which are highly conserved across bilaterians. In situ hybridization revealed distinct expression of NPY in specialized compartments, including potential “integration centers,” where visual, tactile, and other behavioral circuitries converge. These centers integrating separate circuits may maintain and modulate learning and memory or other behaviors not yet attributed to NPY‐dependent modulation in Octopus . Extrasomatic localization of NPY mRNA in the neurites of specific neuron populations in the brain suggests a potential demand for immediate translation at synapses and a crucial temporal role for NPY in these cell populations. We also documented the presence of NPY mRNA in a small cell population in the olfactory lobe, which is a component of the Octopus feeding and reproductive control centers. However, the molecular mapping of NPY expression only partially overlapped with that produced by immunohistochemistry in previous studies. Our study provides a precise molecular map of NPY mRNA expression that can be used to design and test future hypotheses about molecular signaling in various Octopus behaviors.
机译:摘要神经肽Y(NPY)是一种进化保守的神经分子,其涉及跨分类群的各种功能,并在章鱼中调节喂养行为和生殖成熟。然而,关于NPY介导的行为和生理过程的精确分子电路很少,这可能涉及多个信号分子在特定脑区中的复杂相互作用。在这里,我们检查了在整个章鱼中枢神经系统中对NPY的表达。章鱼NPE前体的序列分析证实了信号肽和推定活性肽的存在,其在双式亚洲人间受到高度保守的。原位杂交揭示了专用隔间中NPY的不同表达,包括潜在的“集成中心”,其中视觉,触觉和其他行为电路会聚。整合单独电路的这些中心可以维持和调制八达通依赖于NPY依赖性调制的学习和记忆或其他行为。大脑中特异性神经元种群的NPY mRNA中NPY mRNA的肠道局部表明,在这些细胞群体中对NPY的立即翻译的潜在需求。我们还记录了嗅叶中小细胞群中NPY mRNA的存在,这是章鱼饲养和生殖控制中心的组成部分。然而,NPY表达的分子映射仅部分重叠,并在先前的研究中与免疫组化产生的。我们的研究提供了NPY mRNA表达的精确分子图,可用于设计和测试各种章鱼行为中分子信号的未来假设。

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