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直接和母体低蛋白平衡日粮影响鸡的肝脏转录组。

Direct and maternal reduced balanced protein diet influences the liver transcriptome in chickens.

机构信息

Department of AgroBioChem, Precision Livestock and Nutrition Laboratory, Teaching and Research Centre (TERRA), Gembloux AgroBioTech, University of Liège, 5030Gembloux, Belgium.

Department of Biosystems, Laboratory of Livestock Physiology, KU Leuven, 3001Heverlee, Belgium.

出版信息

Br J Nutr. 2021 Aug 14;126(3):337-344. doi: 10.1017/S0007114520003785. Epub 2020 Sep 28.

Abstract

The objective of this study was to evaluate, by means of RNA sequencing, the direct and transgenerational effect of a reduced balanced protein (RP) diet on broiler breeder metabolism. Chickens of the F0 generation were fed a control (C) or RP diet, and their F1 progeny was fed a C or RP diet as well, resulting in four groups of chickens: C/C, C/RP, RP/C and RP/RP. While both direct and maternal effects were seen on body weight, breast muscle weight and abdominal fat weight in the F1 generation, the direct effect was the most dominant one. The liver transcriptome in the F1 generation showed that amino acid metabolism was up-regulated in chickens that received the control feed when compared with their respective contemporaries that received the reduced protein diet. Interestingly, chickens hatched from control-fed hens but reared on the reduced protein diet (C/RP group) activated a fatty acid metabolism, expressing more fatty acid desaturase 1 gene, fatty acid desaturase 2 gene and elongation of very long-chain fatty acids protein 2 gene, when compared with control-fed chickens hatched from control-fed hens (C/C group), while chickens hatched from reduced protein-fed hens that received themselves the same reduced protein diet (RP/RP group) triggered their glucose metabolism more, showing elevated levels of phosphofructokinase gene, 6-phosphofructo-2-kinase/fructose-2,6-biphospatase 4 and fructose-biphosphate aldolase C mRNA compared with the chickens hatched from reduced protein-fed hens but reared on a control diet (RP/C group). This suggests that the maternal protein diet has an impact on the metabolism of broilers when they are reared on a RP diet.

摘要

本研究通过 RNA 测序,评估了低蛋白(RP)日粮对肉种鸡代谢的直接和代际影响。F0 代雏鸡分别饲喂对照(C)或 RP 日粮,其 F1 后代也分别饲喂 C 或 RP 日粮,共分为 4 组鸡:C/C、C/RP、RP/C 和 RP/RP。F1 代雏鸡的体重、胸肌重和腹脂重均表现出直接和母体效应,但直接效应最为显著。F1 代肝脏转录组显示,与接受低蛋白日粮的雏鸡相比,接受对照饲料的雏鸡的氨基酸代谢上调。有趣的是,与接受对照饲料的母鸡孵化但在低蛋白日粮中饲养的雏鸡(C/RP 组)相比,从接受对照饲料的母鸡孵化的雏鸡(C/C 组)激活了脂肪酸代谢,表达了更多的脂肪酸去饱和酶 1 基因、脂肪酸去饱和酶 2 基因和长链脂肪酸延伸蛋白 2 基因,而从低蛋白日粮饲养的母鸡孵化的雏鸡(RP/RP 组)则更多地触发了其葡萄糖代谢,与从低蛋白日粮饲养的母鸡孵化但在对照日粮中饲养的雏鸡(RP/C 组)相比,磷酸果糖激酶基因、6-磷酸果糖-2-激酶/果糖-2,6-二磷酸酶 4 和果糖二磷酸醛缩酶 C mRNA 水平升高。这表明,母体蛋白质日粮对肉鸡在低蛋白日粮下的代谢有影响。

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