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基于 16S rDNA 基因测序和 LC/MS 代谢组学的长期热暴露致动情周期障碍大鼠阴道微生物群和血清代谢组学的综合分析。

Integrative Analysis of Vaginal Microorganisms and Serum Metabolomics in Rats With Estrous Cycle Disorder Induced by Long-Term Heat Exposure Based on 16S rDNA Gene Sequencing and LC/MS-Based Metabolomics.

机构信息

Department of Operational Medicine, Tianjin Institute of Environmental and Operational Medicine, Tianjin, China.

Department of Endocrinology, Tianjin Central Hospital of Gynecology and Obstetrics, Tianjin, China.

出版信息

Front Cell Infect Microbiol. 2021 Mar 2;11:595716. doi: 10.3389/fcimb.2021.595716. eCollection 2021.

Abstract

Long term heat exposure (HE) leads to estrous cycle disorder (ECD) in female rats and damages reproductive function. However, the regulation mechanism of vaginal microorganisms and serum metabolomics remains unclear. This study aimed to explore the effects of microbes on the vaginal secretions of rats with ECD and describe the serum metabolomics characteristics and their relationship with vaginal microorganisms. The alterations in the serum levels of neurotransmitters were used to verify the possible regulatory pathways. The relative abundance, composition, and colony interaction network of microorganisms in the vaginal secretions of rats with ECD changed significantly. The metabolomics analysis identified 22 potential biomarkers in the serum including lipid metabolism, amino acid metabolism, and mammalian target of rapamycin and gonadotropin-releasing hormone (GnRH) signaling pathways. Further, 52 pairs of vaginal microbiota-serum metabolites correlations (21 positive and 31 negative) were determined. The abundance of correlated positively with the metabolite L-arginine concentration and negatively with the oleic acid concentration. Further, a negative correlation was found between the abundance of and the L-arginine concentration and between the metabolite benzoic acid concentration and the abundance of . These four bacteria-metabolite pairs had a direct or indirect relationship with the estrous cycle and reproduction. The glutamine, glutamate, and dopamine levels were significantly uncontrolled. The former two were closely related to GnRH signaling pathways involved in the development and regulation of HE-induced ECD in rats. Serum neurotransmitters partly reflected the regulatory effect of vaginal microorganisms on the host of HE-induced ECD, and glutamatergic neurotransmitters might be closely related to the alteration in vaginal microorganisms. These findings might help comprehend the mechanism of HE-induced ECD and propose a new intervention based on vaginal microorganisms.

摘要

长期热暴露(HE)可导致雌性大鼠发情周期障碍(ECD),并损害生殖功能。然而,阴道微生物和血清代谢组学的调节机制尚不清楚。本研究旨在探讨微生物对 ECD 大鼠阴道分泌物的影响,并描述血清代谢组学特征及其与阴道微生物的关系。使用神经递质血清水平的变化来验证可能的调节途径。ECD 大鼠阴道分泌物中微生物的相对丰度、组成和群落互作网络发生了显著变化。代谢组学分析确定了血清中 22 种潜在的生物标志物,包括脂质代谢、氨基酸代谢和哺乳动物雷帕霉素靶蛋白和促性腺激素释放激素(GnRH)信号通路。此外,确定了 52 对阴道微生物群-血清代谢物相关性(21 个正相关和 31 个负相关)。 的丰度与代谢物 L-精氨酸浓度呈正相关,与油酸浓度呈负相关。此外,还发现 与 L-精氨酸浓度之间以及代谢物苯甲酸浓度与 丰度之间呈负相关。这四个细菌-代谢物对与发情周期和繁殖有直接或间接的关系。谷氨酰胺、谷氨酸和多巴胺水平明显失控。前两者与参与大鼠 HE 诱导的 ECD 发生和调节的 GnRH 信号通路密切相关。血清神经递质部分反映了阴道微生物对 HE 诱导的 ECD 宿主的调节作用,谷氨酸能神经递质可能与阴道微生物的改变密切相关。这些发现可能有助于理解 HE 诱导的 ECD 的机制,并提出基于阴道微生物的新干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd8e/7962411/ea0b80e5f04d/fcimb-11-595716-g001.jpg

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