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解析负能量平衡下生长的奶牛卵泡中的标志性卵泡液代谢物:一种体外研究方法

Unravelling the Signature Follicular Fluid Metabolites in Dairy Cattle Follicles Growing Under Negative Energy Balance: An In Vitro Approach.

作者信息

Shahzad Muhammad, Cao Jianhua, Kolachi Hubdar Ali, Ayantoye Jesse Oluwaseun, Yu Zhou, Niu Yifan, Wan Pengcheng, Zhao Xueming

机构信息

Institute of Animal Sciences (IAS), Chinese Academy of Agricultural Sciences (CAAS), No. 2 Yuanmingyuan Western Road, Haidian District, Beijing 100193, China.

State Key Laboratory of Sheep Genetic Improvement and Healthy Breeding, Institute of Animal Husbandry and Veterinary Sciences, Xinjiang Academy of Agricultural and Reclamation Sciences, Shihezi 832000, China.

出版信息

Int J Mol Sci. 2024 Nov 25;25(23):12629. doi: 10.3390/ijms252312629.

Abstract

The astringent selection criteria for milk-oriented traits in dairy cattle have rendered these animals prone to various metabolic disorders. Postpartum lactational peak and reduced feed intake lead to negative energy balance in cattle. As a compensatory mechanism, cattle start mobilizing fat reserves to meet the energy demand for vital body functions. Consequently, diminished glucose concentrations and elevated ketone body levels lead to poor ovarian function. The impaired follicular development and subpar oocyte quality diminish the conception rates, which poses significant economic repercussions. Follicular fluid is integral to the processes of follicular growth and oocyte development. Hence, the present study was performed to identify potential alterations in metabolites in the follicular fluid under in vitro culture conditions mimicking negative energy balance. Our results revealed nine distinct metabolites exhibiting differential expression in follicular fluid under negative energy balance. The differentially expressed metabolites were predominantly associated with pathways related to amino acid metabolism, lipid metabolism, signal transduction mechanisms, and membrane transport, alongside other biological processes. The identified signature metabolites may be further validated to determine oocyte fitness subjected to in vitro fertilization or embryo production from slaughterhouse source ovaries.

摘要

奶牛针对产奶性状的严格选择标准使这些动物容易出现各种代谢紊乱。产后泌乳高峰期和采食量减少导致奶牛能量负平衡。作为一种代偿机制,奶牛开始动员脂肪储备以满足身体重要功能的能量需求。因此,葡萄糖浓度降低和酮体水平升高会导致卵巢功能不佳。卵泡发育受损和卵母细胞质量欠佳会降低受孕率,这会造成重大经济影响。卵泡液对于卵泡生长和卵母细胞发育过程至关重要。因此,本研究旨在确定在模拟能量负平衡的体外培养条件下卵泡液中代谢物的潜在变化。我们的结果显示,在能量负平衡状态下,卵泡液中有九种不同的代谢物呈现差异表达。差异表达的代谢物主要与氨基酸代谢、脂质代谢、信号转导机制和膜转运以及其他生物学过程相关的途径有关。所鉴定出的标志性代谢物可能需要进一步验证,以确定体外受精或利用屠宰场来源卵巢进行胚胎生产时卵母细胞的适宜性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef50/11641226/336e02d329e9/ijms-25-12629-g001.jpg

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