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社会优势重塑了一种高度群居的丽鱼科鱼类的转录组神经肽组。

Social Dominance Reorganizes the Transcriptomic Neuropeptidome in a Highly Social Cichlid Fish.

作者信息

Miller-Crews Isaac, Hofmann Hans A

出版信息

bioRxiv. 2025 Aug 29:2024.11.07.622449. doi: 10.1101/2024.11.07.622449.

Abstract

UNLABELLED

Complex behavioral phenotypes, such as social status, emerge from the genome across biological levels, with many of the fundamental neural mechanisms shared across vertebrates. While various aspects of the brain have been implicated in modulating social behavior, critical regulators include cells of the preoptic area (POA) and hypothalamus, which by applying cellular- resolution transcriptomic approaches allows for greater exploration of cellular dynamics in these cells. Yet, how complex gene networks function between and within cell types to regulate complex social behavior is still poorly understood. Importantly, when considering functionally relevant neuronal classes of genes such as neuropeptides, understanding the inherent complexity that emerges from the interaction of these genes in the transcriptomic neuropeptidome can provide unique insight into how social behavior is regulated. Here, we used single-nucleus RNA-sequencing in the hypothalamus and POA of a highly social cichlid fish, , to understand the effect that social status has on cellular-level transcriptomic profiles. Males of this species are well known for their highly plastic phenotypes related to social status, which allows for a hypothesis-driven approach. We demonstrate how social status manifests in changes of gene co-expression networks across neuronal populations and highlight transcriptomic signatures of social dominance when targeting known functional differences among AVP neuronal cell types. We implement a novel approach to relate how differences in social state translate to the integration of the transcriptomic neuropeptidome. Taken together, this research provides insights into how gene expression networks that modulate social behavior, including neuropeptide networks, function at the cellular level.

SIGNIFICANCE STATEMENT

Here, we used single-nucleus RNA-seq in the hypothalamus and POA of to understand the effect that social status has on cellular gene expression. We demonstrate how social status manifests, from changes in broader neuronal gene networks to targeted changes between known socially-relevant neurons. For the first time, we assess the entirety of the transcriptomic neuropeptidome to understand the interaction of neuropeptide gene networks with social dominance. These findings provide a valuable resource for future functional work and an analytical framework for comparative studies on the evolution of the neural mechanisms of social behavior. Insights into the transcriptomic networks that modulate social status, specifically with neuropeptides, aid in our understanding of the complexity inherent in social behavior.

摘要

未标注

复杂的行为表型,如社会地位,是从基因组跨越生物水平产生的,许多基本的神经机制在脊椎动物中是共有的。虽然大脑的各个方面都与调节社会行为有关,但关键的调节因子包括视前区(POA)和下丘脑的细胞,通过应用细胞分辨率转录组学方法,可以更深入地探索这些细胞中的细胞动态。然而,复杂的基因网络如何在细胞类型之间和内部发挥作用以调节复杂的社会行为,我们仍然知之甚少。重要的是,当考虑功能相关的神经元基因类别,如神经肽时,了解这些基因在转录组神经肽组中的相互作用所产生的内在复杂性,可以为社会行为的调节方式提供独特的见解。在这里,我们利用单细胞核RNA测序技术,对一种高度群居的丽鱼科鱼类的下丘脑和视前区进行研究,以了解社会地位对细胞水平转录组图谱的影响。该物种的雄性以其与社会地位相关的高度可塑性表型而闻名,这使得我们能够采用假设驱动的方法。我们展示了社会地位如何在神经元群体的基因共表达网络变化中体现出来,并在针对精氨酸加压素(AVP)神经元细胞类型之间已知的功能差异时,突出了社会优势的转录组特征。我们采用了一种新颖的方法来关联社会状态的差异如何转化为转录组神经肽组的整合。综上所述,这项研究为调节社会行为的基因表达网络,包括神经肽网络,在细胞水平上的功能提供了见解。

意义声明

在这里,我们利用单细胞核RNA测序技术对丽鱼科鱼类的下丘脑和视前区进行研究,以了解社会地位对细胞基因表达有何影响。我们展示了社会地位是如何体现的,从更广泛的神经元基因网络变化到已知的与社会相关的神经元之间的靶向变化。我们首次评估了整个转录组神经肽组,以了解神经肽基因网络与社会优势之间的相互作用。这些发现为未来的功能研究提供了宝贵的资源,并为社会行为神经机制进化的比较研究提供了一个分析框架。对调节社会地位的转录组网络的深入了解,特别是与神经肽相关的网络,有助于我们理解社会行为中固有的复杂性。

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