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她真有胆量:章鱼胺在昆虫雌性生殖中的作用。

She's got nerve: roles of octopamine in insect female reproduction.

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, USA.

出版信息

J Neurogenet. 2021 Sep;35(3):132-153. doi: 10.1080/01677063.2020.1868457. Epub 2021 Apr 28.

Abstract

The biogenic monoamine octopamine (OA) is a crucial regulator of invertebrate physiology and behavior. Since its discovery in the 1950s in octopus salivary glands, OA has been implicated in many biological processes among diverse invertebrate lineages. It can act as a neurotransmitter, neuromodulator and neurohormone in a variety of biological contexts, and can mediate processes including feeding, sleep, locomotion, flight, learning, memory, and aggression. Here, we focus on the roles of OA in female reproduction in insects. OA is produced in the octopaminergic neurons that innervate the female reproductive tract (RT). It exerts its effects by binding to receptors throughout the RT to generate tissue- and region-specific outcomes. OA signaling regulates oogenesis, ovulation, sperm storage, and reproductive behaviors in response to the female's internal state and external conditions. Mating profoundly changes a female's physiology and behavior. The female's OA signaling system interacts with, and is modified by, male molecules transferred during mating to elicit a subset of the post-mating changes. Since the role of OA in female reproduction is best characterized in the fruit fly , we focus our discussion on this species but include discussion of OA in other insect species whenever relevant. We conclude by proposing areas for future research to further the understanding of OA's involvement in female reproduction in insects.

摘要

生物单胺类物质章鱼胺(OA)是调节无脊椎动物生理和行为的关键物质。自 20 世纪 50 年代在章鱼唾液腺中发现 OA 以来,它已被涉及到多种无脊椎动物谱系的许多生物学过程。OA 在多种生物环境中可作为神经递质、神经调质和神经激素发挥作用,并能介导摄食、睡眠、运动、飞行、学习、记忆和攻击等过程。在这里,我们重点关注 OA 在昆虫雌性生殖中的作用。OA 是由支配雌性生殖道(RT)的章鱼胺能神经元产生的。它通过与 RT 中的受体结合发挥作用,从而产生组织和区域特异性的作用。OA 信号转导可调节卵母细胞发生、排卵、精子储存以及生殖行为,以响应雌性的内部状态和外部条件。交配会深刻改变雌性的生理和行为。雌性的 OA 信号系统与交配过程中传递的雄性分子相互作用,并被其改变,以引发交配后变化的一部分。由于 OA 在雌性生殖中的作用在果蝇中得到了最好的描述,因此我们将重点讨论这个物种,但在相关时也会包括其他昆虫物种中的 OA 讨论。最后,我们提出了未来研究的领域,以进一步了解 OA 参与昆虫雌性生殖的作用。

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