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雄性特异性P1(pC1)神经元的转录谱分析。

Transcriptional profiling of male-specific P1 (pC1) neurons.

作者信息

Ahmed Osama M, Crocker Amanda, Murthy Mala

机构信息

Princeton Neuroscience Institute, Princeton University, Princeton, NJ 08540, USA.

Department of Psychology, University of Washington, Seattle, WA 98105, USA.

出版信息

bioRxiv. 2023 Nov 10:2023.11.07.566045. doi: 10.1101/2023.11.07.566045.

Abstract

In , the P1 (pC1) cluster of male-specific neurons both integrates sensory cues and drives or modulates behavioral programs such as courtship, in addition to contributing to a social arousal state. The behavioral function of these neurons is linked to the genes they express, which underpin their capacity for synaptic signaling, neuromodulation, and physiology. Yet, P1 (pC1) neurons have not been fully characterized at the transcriptome level. Moreover, it is unknown how the molecular landscape of P1 (pC1) neurons acutely changes after flies engage in social behaviors, where baseline P1 (pC1) neural activity is expected to increase. To address these two gaps, we use single cell-type RNA sequencing to profile and compare the transcriptomes of P1 (pC1) neurons harvested from socially paired versus solitary male flies. Compared to control transcriptome datasets, we find that P1 (pC1) neurons are enriched in 2,665 genes, including those encoding receptors, neuropeptides, and cell-adhesion molecules (/). Furthermore, courtship is characterized by changes in ~300 genes, including those previously implicated in regulating behavior (e.g. , β, , , ). Finally, we identify a suite of genes that link conspecific courtship with the innate immune system. Together, these data serve as a molecular map for future studies of an important set of higher-order and sexually-dimorphic neurons.

摘要

在[研究中],雄性特异性神经元的P1(pC1)簇除了有助于形成社会唤醒状态外,还整合感觉线索并驱动或调节诸如求偶等行为程序。这些神经元的行为功能与它们所表达的基因相关联,这些基因支撑着它们进行突触信号传递、神经调节和生理活动的能力。然而,P1(pC1)神经元在转录组水平上尚未得到充分表征。此外,尚不清楚果蝇进行社会行为后,P1(pC1)神经元的分子格局如何急剧变化,而在社会行为中,预计P1(pC1)神经元的基线神经活动会增加。为了填补这两个空白,我们使用单细胞类型RNA测序来分析和比较从社会配对与单独饲养的雄性果蝇中采集的P1(pC1)神经元的转录组。与对照转录组数据集相比,我们发现P1(pC1)神经元在2665个基因中富集,包括那些编码受体、神经肽和细胞粘附分子的基因(/)。此外,求偶行为的特征是约300个基因发生变化,包括那些先前与调节行为有关的基因(例如,β、、、)。最后,我们确定了一组将同种求偶与先天免疫系统联系起来的基因。总之,这些数据为未来对一组重要的高阶和性二态神经元的研究提供了分子图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f24f/10659367/ac447700840d/nihpp-2023.11.07.566045v1-f0001.jpg

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