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无脊椎动物中单胺的神经内分泌功能:以双壳贝类为例。

Neuroendocrine functions of monoamines in invertebrates: Focus on bivalve molluscs.

机构信息

Department of Biological, Geological, and Environmental Sciences, University of Bologna, Via Sant'Alberto 163, 48123, Ravenna, Italy; National Biodiversity Future Center, 90133, Palermo, Italy.

Department of Earth, Environment and Life Sciences, University of Genoa, Corso Europa 26, 16132, Genoa, Italy; National Biodiversity Future Center, 90133, Palermo, Italy.

出版信息

Mol Cell Endocrinol. 2024 Jul 1;588:112215. doi: 10.1016/j.mce.2024.112215. Epub 2024 Mar 26.

Abstract

Monoamines (MA) such as serotonin, catecholamines (dopamine, norepinephrine, epinephrine), and trace amines (octopamine, tyramine), are neurotransmitters and neuroendocrine modulators in vertebrates, that contribute to adaptation to the environment. Although MA are conserved in evolution, information is still fragmentary in invertebrates, given the diversity of phyla and species. However, MA are crucial in homeostatic processes in these organisms, where the absence of canonical endocrine glands in many groups implies that the modulation of physiological functions is essentially neuroendocrine. In this review, we summarize available information on MA systems in invertebrates, with focus on bivalve molluscs, that are widespread in different aquatic environments, where they are subjected to a variety of environmental stimuli. Available data are reviewed on the presence of the different MA in bivalve tissues, their metabolism, target cells, signaling pathways, and the physiological functions modulated in larval and adult stages. Research gaps and perspectives are highlighted, in order to enrich the framework of knowledge on MA neuroendocrine functions, and on their role in adaptation to ongoing and future environmental changes.

摘要

单胺类物质(MA)如血清素、儿茶酚胺(多巴胺、去甲肾上腺素、肾上腺素)和痕量胺(章鱼胺、酪胺),是脊椎动物中的神经递质和神经内分泌调节剂,有助于适应环境。尽管 MA 在进化中是保守的,但由于门和物种的多样性,无脊椎动物中的信息仍然零散。然而,MA 在这些生物体的稳态过程中至关重要,在许多群体中缺乏典型的内分泌腺意味着对生理功能的调节本质上是神经内分泌的。在这篇综述中,我们总结了无脊椎动物 MA 系统的现有信息,重点介绍了双壳类软体动物,它们广泛分布于不同的水生环境中,在这些环境中,它们会受到各种环境刺激的影响。综述了双壳类动物组织中不同 MA 的存在、代谢、靶细胞、信号通路以及在幼虫和成虫阶段调节的生理功能。强调了研究空白和展望,以便丰富 MA 神经内分泌功能的知识框架,以及它们在适应持续和未来环境变化中的作用。

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