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Negative energy balance and hepatic gene expression patterns in high-yielding dairy cows during the early postpartum period: a global approach

机译:高产奶牛产后早期的负能量平衡和肝脏基因表达模式:一种全球性方法

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摘要

In high-yielding dairy cows the liver undergoes extensive physiological and biochemical changes during the early postpartum period in an effort to re-establish metabolic homeostasis and to counteract the adverse effects of negative energy balance (NEB). These adaptations are likely to be mediated by significant alterations in hepatic gene expression. To gain new insights into these events an energy balance model was created using differential feeding and milking regimes to produce two groups of cows with either a mild (MNEB) or severe NEB (SNEB) status. Cows were slaughtered and liver tissues collected on days 6–7 of the first follicular wave postpartum. Using an Affymetrix 23k oligonucleotide bovine array to determine global gene expression in hepatic tissue of these cows, we found a total of 416 genes (189 up- and 227 downregulated) to be altered by SNEB. Network analysis using Ingenuity Pathway Analysis revealed that SNEB was associated with widespread changes in gene expression classified into 36 gene networks including those associated with lipid metabolism, connective tissue development and function, cell signaling, cell cycle, and metabolic diseases, the three most significant of which are discussed in detail. SNEB cows displayed reduced expression of transcription activators and signal transducers that regulate the expression of genes and gene networks associated with cell signaling and tissue repair. These alterations are linked with increased expression of abnormal cell cycle and cellular proliferation associated pathways. This study provides new information and insights on the effect of SNEB on gene expression in high-yielding Holstein Friesian dairy cows in the early postpartum period.
机译:在高产奶牛中,肝脏在产后早期会经历广泛的生理和生化变化,以努力重新建立代谢稳态,并抵消负能量平衡(NEB)的不利影响。这些适应可能是由肝基因表达的显着改变介导的。为了获得对这些事件的新见解,创建了一种能量平衡模型,该模型使用不同的喂养和挤奶方案来生产两组处于轻度(MNEB)或重度NEB(SNEB)状态的母牛。在产后第一个卵泡波的第6-7天宰杀了牛并收集了肝组织。使用Affymetrix 23k寡核苷酸牛阵列确定这些母牛的肝组织中的整体基因表达,我们发现SNEB会改变总共416个基因(189个上调和227个下调)。使用Ingenuity Pathway Analysis进行的网络分析显示,SNEB与基因表达的广泛变化相关,分为36个基因网络,包括与脂质代谢,结缔组织发育和功能,细胞信号转导,细胞周期和代谢疾病相关的基因网络,这三个最重要的详细讨论。 SNEB奶牛的转录激活子和信号转导子的表达降低,从而调节与细胞信号传导和组织修复相关的基因和基因网络的表达。这些改变与异常细胞周期和细胞增殖相关途径的表达增加有关。这项研究为产后早期SNEB对高产荷斯坦黑白花奶牛基因表达的影响提供了新的信息和见解。

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