环境臭氧污染暴露对小鼠睾丸组织的评价:综合代谢组学和转录组学分析。

IF 2.6 3区 医学 Q2 OBSTETRICS & GYNECOLOGY
Xiaoqin Feng, Jinhong Luo
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引用次数: 0

摘要

全球空气中臭氧的实际浓度每年都在上升,这对人类健康,特别是对男性生育能力产生了明显的不利影响。流行病学研究表明,男性暴露于环境臭氧与精液质量下降有关。因此,迫切需要阐明臭氧暴露对男性生殖的毒理学评价。本研究通过转录组mRNA测序和高效液相色谱-串联质谱分析,描述了臭氧暴露小鼠睾丸组织的代谢组学和转录组学特征。在转录组学上,KEGG显示臭氧暴露显著影响精子发生,同时观察到蛋白丝氨酸/苏氨酸激酶活性失调、细胞内信号转导、细胞投射组织和微管聚合调控,这些分子事件参与了精子发生的调控。在代谢组学中,20种差异代谢物是丰度排名最高的特征,作为磷脂代谢的中间产物作为信号分子,参与细胞内信号转导通路,可能影响精子细胞膜的流动性和结构。综合组学研究表明,转录组学与代谢组学之间存在显著相关性(p值= 0.01),其中精氨酸生物合成是精子发生所必需的,氨基酰基- trna生物合成是主要途径。在整合组学中,研究人员发现了几个与精子发生相关的特征,包括creb314、Pgp和Tcp1,这些特征有助于精子头核的成熟、能量代谢和精子鞭毛的形成。这一发现表明,环境臭氧暴露显著改变了小鼠睾丸的转录组和代谢组特征,并损害了精子发生。我们的发现为更严格地控制和管理环境臭氧以降低男性生育能力下降的潜在风险提供了新的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Ambient Ozone Pollution Exposure on Mice Testicular Tissue: An Integrated Metabolomic and Transcriptomic Analysis.

The real ozone concentration in the air is rising yearly globally, which remarkably has adverse effect on human health, particularly on male fertility. Epidemiological studies showed that men exposure to ambient ozone was linked with decreased semen quality. Therefore, it is urgent to elucidate the toxicological evaluation of ozone exposure on men reproduction. This study conducted transcriptomic mRNA sequencing and high-performance liquid chromatography-tandem mass spectrometry to depict the characteristics of metabolomics and transcriptomics of mice testis tissue exposed to ozone. In transcriptomic, KEGG showed that spermatogenesis was significantly influenced by ozone exposure, meanwhile dysregulation of protein serine/threonine kinase activity, intracellular signal transduction, cell projection organization, and regulation of microtubule polymerization were observed, these molecular events participate in regulation and control of spermatogenesis. In metabolomic, twenty differential metabolites were the top abundance ranking features, as intermediate products of phospholipid metabolism to act as signal molecules, participating in intracellular signal transduction pathways, may affect the fluidity and structure of sperm cell membrane. Integrated omics showed that aminoacyl-tRNA biosynthesis was the main pathway attributed to significant correlation between transcriptomics and metabolomics (combination p value = 0.01), including arginine biosynthesis, essential for spermatogenesis. In integrated omics, several signatures were identified to be associated with spermatogenesis, including Creb3l4, Pgp and Tcp1, contributing to maturation of sperm head nuclei, energy metabolism and formation of sperm flagellum. The finding suggested ambient ozone exposure significantly altered the characteristics of transcriptome and metabolome of mice testis, and impaired spermatogenesis. Our finding provided new evidence of more stringent control and management for ambient ozone so as to reduce the potential risk of declined male fertility.

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来源期刊
Reproductive Sciences
Reproductive Sciences 医学-妇产科学
CiteScore
5.50
自引率
3.40%
发文量
322
审稿时长
4-8 weeks
期刊介绍: Reproductive Sciences (RS) is a peer-reviewed, monthly journal publishing original research and reviews in obstetrics and gynecology. RS is multi-disciplinary and includes research in basic reproductive biology and medicine, maternal-fetal medicine, obstetrics, gynecology, reproductive endocrinology, urogynecology, fertility/infertility, embryology, gynecologic/reproductive oncology, developmental biology, stem cell research, molecular/cellular biology and other related fields.
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