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对饲喂葡萄籽和葡萄渣粕提取物的初产奶牛肝脏转录谱和血浆脂质谱的分析。

Analysis of hepatic transcript profile and plasma lipid profile in early lactating dairy cows fed grape seed and grape marc meal extract.

作者信息

Gessner Denise K, Winkler Anne, Koch Christian, Dusel Georg, Liebisch Gerhard, Ringseis Robert, Eder Klaus

机构信息

Institute of Animal Nutrition and Nutrition Physiology, Justus-Liebig-University Giessen, Heinrich-Buff-Ring 26-32, Giessen, 35392, Germany.

Educational and Research Centre for Animal Husbandry, Hofgut Neumuehle, Muenchweiler an der Alsenz, 67728, Germany.

出版信息

BMC Genomics. 2017 Mar 23;18(1):253. doi: 10.1186/s12864-017-3638-1.

Abstract

BACKGROUND

It was recently reported that dairy cows fed a polyphenol-rich grape seed and grape marc meal extract (GSGME) during the transition period had an increased milk yield, but the underlying reasons remained unclear. As polyphenols exert a broad spectrum of metabolic effects, we hypothesized that feeding of GSGME influences metabolic pathways in the liver which could account for the positive effects of GSGME in dairy cows. In order to identify these pathways, we performed genome-wide transcript profiling in the liver and lipid profiling in plasma of dairy cows fed GSGME during the transition period at 1 week postpartum.

RESULTS

Transcriptomic analysis of the liver revealed 207 differentially expressed transcripts, from which 156 were up- and 51 were down-regulated, between cows fed GSGME and control cows. Gene set enrichment analysis of the 155 up-regulated mRNAs showed that the most enriched gene ontology (GO) biological process terms were dealing with cell cycle regulation and the most enriched Kyoto Encyclopedia of Genes and Genomes pathways were p53 signaling and cell cycle. Functional analysis of the 43 down-regulated mRNAs revealed that a great part of these genes are involved in endoplasmic reticulum (ER) stress-induced unfolded protein response (UPR) and inflammatory processes. Accordingly, protein folding, response to unfolded protein, unfolded protein binding, chemokine activity and heat shock protein binding were identified as one of the most enriched GO biological process and molecular function terms assigned to the down-regulated genes. In line with the transcriptomics data the plasma concentrations of the acute phase proteins serum amyloid A (SAA) and haptoglobin were reduced in cows fed GSGME compared to control cows. Lipidomic analysis of plasma revealed no differences in the concentrations of individual species of major and minor lipid classes between cows fed GSGME and control cows.

CONCLUSIONS

Analysis of hepatic transcript profile in cows fed GSGME during the transition period at 1 week postpartum indicates that polyphenol-rich feed components are able to inhibit ER stress-induced UPR and inflammatory processes, both of which are considered to contribute to liver-associated diseases and to impair milk performance in dairy cows, in the liver of dairy cows during early lactation.

摘要

背景

最近有报道称,在过渡期给奶牛饲喂富含多酚的葡萄籽和葡萄渣粉提取物(GSGME)可提高产奶量,但其潜在原因尚不清楚。由于多酚具有广泛的代谢作用,我们推测饲喂GSGME会影响肝脏中的代谢途径,这可能是GSGME对奶牛产生积极影响的原因。为了确定这些途径,我们对产后1周过渡期饲喂GSGME的奶牛肝脏进行了全基因组转录谱分析,并对其血浆进行了脂质谱分析。

结果

肝脏转录组分析显示,在饲喂GSGME的奶牛和对照奶牛之间,有207个差异表达的转录本,其中156个上调,51个下调。对155个上调mRNA的基因集富集分析表明,最富集的基因本体(GO)生物学过程术语涉及细胞周期调控,最富集的京都基因与基因组百科全书途径是p53信号通路和细胞周期。对43个下调mRNA的功能分析表明,这些基因中的很大一部分参与内质网(ER)应激诱导的未折叠蛋白反应(UPR)和炎症过程。因此,蛋白质折叠、对未折叠蛋白的反应、未折叠蛋白结合、趋化因子活性和热休克蛋白结合被确定为分配给下调基因的最富集的GO生物学过程和分子功能术语之一。与转录组学数据一致,与对照奶牛相比,饲喂GSGME的奶牛血浆中急性期蛋白血清淀粉样蛋白A(SAA)和触珠蛋白的浓度降低。血浆脂质组分析显示,饲喂GSGME的奶牛和对照奶牛之间主要和次要脂质类别的单个物种浓度没有差异。

结论

对产后第1周过渡期饲喂GSGME的奶牛肝脏转录谱的分析表明,富含多酚的饲料成分能够抑制ER应激诱导的UPR和炎症过程,这两者都被认为与肝脏相关疾病有关,并会损害奶牛早期泌乳期的产奶性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfa9/5364584/23f311f62f63/12864_2017_3638_Fig1_HTML.jpg

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