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牛奶代谢组学揭示了人工授精后水牛早期妊娠预测的潜在生物标志物。

Milk Metabolomics Reveals Potential Biomarkers for Early Prediction of Pregnancy in Buffaloes Having Undergone Artificial Insemination.

作者信息

de Nicola Donato, Vinale Francesco, Salzano Angela, d'Errico Giada, Vassetti Anastasia, D'Onofrio Nunzia, Balestrieri Maria Luisa, Neglia Gianluca

机构信息

Department of Veterinary Medicine and Animal Production, University of Naples "Federico II", 80137 Naples, Italy.

Institute for Sustainable Plant Protection, National Research Council, 80055 Portici (NA), Italy.

出版信息

Animals (Basel). 2020 Apr 27;10(5):758. doi: 10.3390/ani10050758.

Abstract

This study aimed to identify potential biomarkers for early pregnancy diagnosis in buffaloes subjected to artificial insemination (AI). The study was carried out on 10 pregnant and 10 non-pregnant buffaloes that were synchronized by Ovsynch-Timed Artificial Insemination Program and have undergone the first AI. Furthermore, milk samples were individually collected ten days before AI (the start of the synchronization treatment), on the day of AI, day 7 and 18 after AI, and were analyzed by LC-MS. Statistical analysis was carried out by using Mass Profile Professional (Agilent Technologies, Santa Clara, CA, USA). Metabolomic analysis revealed the presence of several metabolites differentially expressed between pregnant and non-pregnant buffaloes. Among these, a total of five metabolites were identified by comparison with an online database and a standard compound as acetylcarnitine (3-Acetoxy-4-(trimethylammonio)butanoate), arginine-succinic acid hydrate, 5'-O-{[3-({4-[(3aminopropyl)amino]butyl}amino)propyl]carbamoyl}-2'-deoxyadenosine, N-(1-Hydroxy-2-hexadecanyl)pentadecanamide, and N-[2,3-Bis(dodecyloxy)propyl]-L-lysinamide). Interestingly, acetylcarnitine was dominant in milk samples collected from non-pregnant buffaloes. The results obtained from milk metabolic profile and hierarchical clustering analysis revealed significant differences between pregnant and non-pregnant buffaloes, as well as in the metabolite expression. Overall, the findings indicate the potential of milk metabolomics as a powerful tool to identify biomarkers of early pregnancy in buffalo undergoing AI.

摘要

本研究旨在确定人工授精(AI)水牛早期妊娠诊断的潜在生物标志物。该研究对10头怀孕和10头未怀孕的水牛进行,这些水牛通过同期发情定时人工授精程序进行同步,并已接受首次人工授精。此外,在人工授精前10天(同步处理开始时)、人工授精当天、人工授精后第7天和第18天分别采集牛奶样本,并通过液相色谱 - 质谱联用仪进行分析。使用Mass Profile Professional(美国安捷伦科技公司,加利福尼亚州圣克拉拉)进行统计分析。代谢组学分析显示,怀孕和未怀孕的水牛之间存在几种差异表达的代谢物。其中,通过与在线数据库和标准化合物比较,共鉴定出五种代谢物,分别为乙酰肉碱(3 - 乙酰氧基 - 4 - (三甲基铵)丁酸)、精氨酸 - 琥珀酸水合物、5'-O-{[3 - ({4 - [(3 - 氨基丙基)氨基]丁基}氨基)丙基]氨基甲酰基}-2'-脱氧腺苷、N - (1 - 羟基 - 2 - 十六烷酰基)十五酰胺和N - [2,3 - 双(十二烷氧基)丙基] - L - 赖氨酸酰胺。有趣的是,乙酰肉碱在未怀孕水牛采集的牛奶样本中占主导地位。从牛奶代谢谱和层次聚类分析获得的结果显示,怀孕和未怀孕的水牛之间以及代谢物表达方面存在显著差异。总体而言,研究结果表明牛奶代谢组学作为一种强大工具,具有识别接受人工授精水牛早期妊娠生物标志物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/825a/7277816/b67cf6fdc300/animals-10-00758-g001.jpg

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