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对精浆进行代谢组学分析以鉴定山羊精液的冷冻保存能力标志物。

Metabolomic analysis of seminal plasma to identify goat semen freezability markers.

作者信息

Xu Bingbing, Bai Xue, Zhang Jian, Li Boyuan, Zhang Yanjun, Su Rui, Wang Ruijun, Wang Zhiying, Lv Qi, Zhang Jiaxin, Li Jinquan

机构信息

College of Animal Science, Inner Mongolia Agricultural University, Hohhot, China.

Key Laboratory of Animal Genetics, Breeding and Reproduction, Hohhot, China.

出版信息

Front Vet Sci. 2023 Mar 10;10:1132373. doi: 10.3389/fvets.2023.1132373. eCollection 2023.

Abstract

Factors affecting sperm freezability in goat seminal plasma were investigated. Based on the total motility of thawed sperm, goats were divided into a high-freezability (HF) group with >60% total motility ( = 8) and a low-freezability (LF) group with <45% total motility ( = 8). Sperm and seminal plasma from the HF and LF groups were separated, HF seminal plasma was mixed with LF spermatozoa, LF seminal plasma was mixed with HF sperm, and the products were subjected to a freeze-thaw procedure. Semen from individual goats exhibited differences in freezability. HF semen had higher sperm motility parameters and plasma membrane and acrosome integrity after thawing; this difference could be related to the composition of seminal plasma. Seminal plasma from the HF and LF groups was evaluated using metabolomic analysis, and multivariate statistical analysis revealed a clear separation of metabolic patterns in the seminal plasma of goats with different freezability classifications. Forty-one differential metabolites were identified using the following screening conditions: variable importance in the projection > 1 and 0.05 < -value < 0.1. Kyoto Encyclopedia of Genes and Genomes pathway analysis revealed significant enrichment of central carbon metabolism in cancer, protein digestion and absorption, aminoacyl-tRNA, and other pathways and significant differences in the abundance of seven differential metabolites, including L-glutamine, L-aspartate, L-arginine, phenylpyruvate, benzoic acid, ketoisocaproic acid, and choline between seminal plasma from the HF and LF groups (-value < 0.05). These significantly differentially-expressed metabolites may be potential biomarkers for sperm freezability. L-glutamine, L-aspartate, and L-arginine may directly affect sperm freezability. Benzoic acid, ketoisocaproic acid, and choline may regulate sperm freezability by participating in anabolic processes involving phenylalanine, leucine, and phosphatidylcholine in sperm.

摘要

研究了影响山羊精液中精子冷冻保存能力的因素。根据解冻后精子的总活力,将山羊分为高冷冻保存能力(HF)组(总活力>60%,n = 8)和低冷冻保存能力(LF)组(总活力<45%,n = 8)。分离HF组和LF组的精子和精浆,将HF组精浆与LF组精子混合,将LF组精浆与HF组精子混合,然后对产物进行冻融处理。个体山羊的精液在冷冻保存能力上存在差异。HF组精液解冻后具有更高的精子活力参数以及质膜和顶体完整性;这种差异可能与精浆的成分有关。采用代谢组学分析方法对HF组和LF组的精浆进行评估,多变量统计分析显示,不同冷冻保存能力分类的山羊精浆代谢模式存在明显分离。采用以下筛选条件鉴定出41种差异代谢物:投影变量重要性>1且0.05 < P值< 0.1。京都基因与基因组百科全书通路分析显示,癌症中的中心碳代谢、蛋白质消化与吸收、氨酰-tRNA等通路显著富集,HF组和LF组精浆之间7种差异代谢物(包括L-谷氨酰胺、L-天冬氨酸、L-精氨酸、苯丙酮酸、苯甲酸、酮异己酸和胆碱)的丰度存在显著差异(P值< 0.05)。这些显著差异表达的代谢物可能是精子冷冻保存能力的潜在生物标志物。L-谷氨酰胺、L-天冬氨酸和L-精氨酸可能直接影响精子冷冻保存能力。苯甲酸、酮异己酸和胆碱可能通过参与精子中涉及苯丙氨酸、亮氨酸和磷脂酰胆碱的合成代谢过程来调节精子冷冻保存能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4e8/10036599/1e5607ae236c/fvets-10-1132373-g0001.jpg

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