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母体补充瘤胃保护蛋氨酸及其对新生荷斯坦犊牛能量代谢、炎症和氧化应激的血液及肝脏生物标志物的影响。

Maternal rumen-protected methionine supplementation and its effect on blood and liver biomarkers of energy metabolism, inflammation, and oxidative stress in neonatal Holstein calves.

作者信息

Jacometo C B, Zhou Z, Luchini D, Trevisi E, Corrêa M N, Loor J J

机构信息

NUPEEC (Núcleo de Ensino, Pesquisa e Extensão em Pecuária), Departamento de Clínicas Veterinária, Programa de Pós-Graduação em Biotecnologia, Universidade Federal de Pelotas, 96010-900, Pelotas, RS, Brazil; Mammalian NutriPhysioGenomics, Department of Animal Sciences and Division of Nutritional Sciences, University of Illinois, Urbana 61801.

Mammalian NutriPhysioGenomics, Department of Animal Sciences and Division of Nutritional Sciences, University of Illinois, Urbana 61801.

出版信息

J Dairy Sci. 2016 Aug;99(8):6753-6763. doi: 10.3168/jds.2016-11018. Epub 2016 May 18.

Abstract

In nonruminants, nutrition during pregnancy can program offspring development, metabolism, and health in later life. Rumen-protected Met (RPM) supplementation during the prepartum period improves liver function and immune response in dairy cows. Our aim was to investigate the effects of RPM during late pregnancy on blood biomarkers (23 targets) and the liver transcriptome (24 genes) in neonatal calves from cows fed RPM at 0.08% of diet dry matter/d (MET) for the last 21 d before calving or controls (CON). Blood (n=12 calves per diet) was collected at birth before receiving colostrum (baseline), 24 h after receiving colostrum, 14, 28, and 50 d (post-weaning) of age. Liver was sampled (n=8 calves per diet) via biopsy on d 4, 14, 28, and 50 of age. Growth and health were not affected by maternal diet. The MET calves had greater overall plasma insulin concentration and lower glucose and ratios of glucose-to-insulin and fatty acids-to-insulin, indicating greater systemic insulin sensitivity. Lower concentration of reactive oxygen metabolites at 14 d of age along with a tendency for lower overall concentration of ceruloplasmin in MET calves indicated a lesser degree of stress. Greater expression on d 4 of fructose-bisphosphatase 1 (FBP1), phosphoenolpyruvate carboxykinase 1 (PCK1), and the facilitated bidirectional glucose transporter SLC2A2 in MET calves indicated alterations in gluconeogenesis and glucose uptake and release. The data agree with the greater expression of the glucocorticoid receptor (GR). Greater expression on d 4 of the insulin receptor (INSR) and insulin-responsive serine/threonine-protein kinase (AKT2) in MET calves indicated alterations in insulin signaling. In that context, the similar expression of sterol regulatory element-binding transcription factor 1 (SREBF1) in CON and MET during the preweaning period followed by the marked upregulation regardless of diet after weaning (d 50) support the idea of changes in hepatic insulin sensitivity during early postnatal life. Expression of carnitine palmitoyltransferase 1A (CPT1A) was overall greater and acyl-CoA oxidase 1 (ACOX1) was lower in MET calves, indicating alterations in fatty acid oxidation. Except forkhead box O1 (FOXO1), all genes changed in expression over time. Transcriptome results indicated that calves from MET-supplemented cows underwent a faster maturation of gluconeogenesis and fatty acid oxidation in the liver, which would be advantageous for adapting to the metabolic demands of extrauterine life.

摘要

在非反刍动物中,孕期营养可影响后代发育、代谢及后期健康。产前补充瘤胃保护蛋氨酸(RPM)可改善奶牛的肝功能和免疫反应。我们旨在研究产前后期补充RPM对新生犊牛血液生物标志物(23个指标)和肝脏转录组(24个基因)的影响,这些犊牛来自于产前最后21天采食0.08%日粮干物质/d蛋氨酸(MET)的奶牛或对照组(CON)。在出生后未摄入初乳前(基线)、摄入初乳后24小时、14、28和50日龄(断奶后)采集血液(每种日粮12头犊牛)。在4、14、28和50日龄时通过活检采集肝脏样本(每种日粮8头犊牛)。生长和健康状况不受母体日粮影响。MET组犊牛总体血浆胰岛素浓度更高,葡萄糖、葡萄糖与胰岛素比值以及脂肪酸与胰岛素比值更低,表明全身胰岛素敏感性更高。MET组犊牛14日龄时活性氧代谢产物浓度较低,同时血浆铜蓝蛋白总体浓度有降低趋势,表明应激程度较低。MET组犊牛在4日龄时果糖-1,6-二磷酸酶1(FBP1)、磷酸烯醇式丙酮酸羧激酶1(PCK1)以及易化双向葡萄糖转运体SLC2A2表达更高,表明糖异生及葡萄糖摄取和释放发生改变。这些数据与糖皮质激素受体(GR)表达增加一致。MET组犊牛在4日龄时胰岛素受体(INSR)和胰岛素反应性丝氨酸/苏氨酸蛋白激酶(AKT2)表达更高,表明胰岛素信号发生改变。在此背景下,断奶前CON组和MET组中固醇调节元件结合转录因子1(SREBF1)表达相似,断奶后(50日龄)无论日粮如何均显著上调,这支持了出生后早期肝脏胰岛素敏感性发生变化的观点。MET组犊牛肉碱棕榈酰转移酶1A(CPT1A)总体表达更高,酰基辅酶A氧化酶1(ACOX1)表达更低,表明脂肪酸氧化发生改变。除叉头框O1(FOXO1)外,所有基因表达均随时间变化。转录组结果表明,补充MET的奶牛所产犊牛肝脏中糖异生和脂肪酸氧化成熟更快,这有利于适应宫外生活的代谢需求。

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