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野生夜行动物的大脑代谢日常节律。

Daily Brain Metabolic Rhythms of Wild Nocturnal Bats.

机构信息

College of Life Science, Jilin Agricultural University, Changchun 130118, China.

Jilin Provincial International Cooperation Key Laboratory for Biological Control of Agricultural Pests, Changchun 130118, China.

出版信息

Int J Mol Sci. 2024 Sep 12;25(18):9850. doi: 10.3390/ijms25189850.

Abstract

Circadian rhythms are found in a wide range of organisms and have garnered significant research interest in the field of chronobiology. Under normal circadian function, metabolic regulation is temporally coordinated across tissues and behaviors within a 24 h period. Metabolites, as the closest molecular regulation to physiological phenotype, have dynamic patterns and their relationship with circadian regulation remains to be fully elucidated. In this study, untargeted brain metabolomics was employed to investigate the daily rhythms of metabolites at four time points corresponding to four typical physiological states in . Key brain metabolites and associated physiological processes active at different time points were detected, with 154 metabolites identified as rhythmic. Analyses of both metabolomics and transcriptomics revealed that several important physiological processes, including the pentose phosphate pathway and oxidative phosphorylation, play key roles in regulating rhythmic physiology, particularly in hunting and flying behaviors. This study represents the first exploration of daily metabolic dynamics in the bat brain, providing insights into the complex regulatory network of circadian rhythms in mammals at a metabolic level. These findings serve as a valuable reference for future studies on circadian rhythms in nocturnal mammals.

摘要

昼夜节律存在于广泛的生物体中,并在时间生物学领域引起了极大的研究兴趣。在正常的昼夜节律功能下,代谢调节在 24 小时内跨组织和行为进行时间协调。代谢物作为最接近生理表型的分子调节物,具有动态模式,其与昼夜节律调节的关系仍有待充分阐明。在这项研究中,采用非靶向性脑代谢组学方法研究了 四种典型生理状态下四个时间点的代谢物的日节律。检测到关键的大脑代谢物及其在不同时间点活跃的相关生理过程,确定了 154 种节律性代谢物。代谢组学和转录组学分析表明,几个重要的生理过程,包括戊糖磷酸途径和氧化磷酸化,在调节节律性生理中起着关键作用,特别是在狩猎和飞行行为中。本研究首次探索了蝙蝠大脑的日常代谢动态,从代谢水平深入了解了哺乳动物昼夜节律的复杂调控网络。这些发现为未来对夜间活动的哺乳动物的昼夜节律研究提供了有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/508d/11432702/242dbb4dd7ab/ijms-25-09850-g001.jpg

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