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利用质子核磁共振波谱法对发情周期中牛输卵管液进行代谢组学分析。

Metabolomic profiling of bovine oviductal fluid across the oestrous cycle using proton nuclear magnetic resonance spectroscopy.

作者信息

Lamy Julie, Gatien Julie, Dubuisson Florine, Nadal-Desbarats Lydie, Salvetti Pascal, Mermillod Pascal, Saint-Dizier Marie

机构信息

UMR85 PRC, INRA, CNRS, IFCE, Université de Tours, 37380 Nouzilly, France.

ALLICE, 37380 Nouzilly, France.

出版信息

Reprod Fertil Dev. 2018 Jun;30(7):1021-1028. doi: 10.1071/RD17389.

Abstract

In the present study we tested whether regulation of the metabolome in bovine oviductal fluid depended on the stage of the oestrous cycle, the side relative to ovulation and local concentrations of steroid hormones. Luminal fluid samples from both oviducts were collected in the preovulatory, postovulatory, mid- and late luteal phases, from cyclic cows at a local abattoir (18-27 cows per stage and side). The metabolomes were assessed by proton nuclear magnetic resonance spectroscopy (H-NMR). In all, 39 metabolites were identified, among which the amino acid glycine and the energy substrates lactate and myoinositol were the most abundant at all stages. The concentrations of 14 metabolites varied according to the stage of the oestrous cycle in at least one side relative to ovulation, of which four (choline, glucose-1-phosphate, glycine and pyruvate) were correlated with intraoviductal progesterone or oestradiol concentrations. Glucose-1-phosphate was most affected by the stage of the cycle, with four- to sixfold higher levels in luteal than periovulatory stages. These results provide new knowledge on the regulation of secretory activity in the oviduct and may help optimise culture media for gamete maturation, IVF and embryo production.

摘要

在本研究中,我们测试了牛输卵管液中代谢组的调节是否取决于发情周期阶段、相对于排卵的一侧以及类固醇激素的局部浓度。在当地屠宰场,从处于发情周期的母牛收集排卵前、排卵后、黄体中期和晚期双侧输卵管的管腔液样本(每个阶段和每侧18 - 27头母牛)。代谢组通过质子核磁共振波谱(H-NMR)进行评估。总共鉴定出39种代谢物,其中氨基酸甘氨酸以及能量底物乳酸和肌醇在所有阶段含量最为丰富。至少在相对于排卵的一侧,14种代谢物的浓度随发情周期阶段而变化,其中四种(胆碱、葡萄糖-1-磷酸、甘氨酸和丙酮酸)与输卵管内孕酮或雌二醇浓度相关。葡萄糖-1-磷酸受周期阶段影响最大,黄体期水平比排卵前期高4至6倍。这些结果为输卵管分泌活动的调节提供了新知识,并可能有助于优化配子成熟、体外受精和胚胎生产的培养基。

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