Wu Shengru, Liu Yanli, Zhu Liqin, Han Di, Bello Bodinga Musa, Yang Xiaojun
College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, P. R. of China.
College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, P. R. of China
Biol Open. 2018 Jan 22;7(1):bio028944. doi: 10.1242/bio.028944.
To understand the hepatic metabolic changes during postnatal liver maturation process in breeder roosters, we investigated the hepatic metabolites composition of 1-day-old, 42-day-old, and 35-week-old breeder roosters using gas chromatography-mass spectrometer (GC-MS). Comprehensive multivariate data analyses were applied to identify the distinguishing metabolites of liver. 84 different kinds of distinguishing metabolites were identified between the livers of 1-day-old and 42-day-old breeder roosters, and 58 different kinds of distinguishing metabolites were identified between the livers from 42-day-old and 35-week-old breeder roosters. Further pathway annotations revealed that the hepatic metabolism was extensively remodeled during the postnatal liver maturation process. The antioxidant capacity of the liver and metabolism of carbohydrates, proteins, amino acids, fats, cholesterols, nucleic acids, and vitamins were all significantly changed at different growing periods after birth. Specifically, we found that the hepatic amino acid metabolic function was continuously enhanced from 1-day-old to 35-week-old roosters. However, the glucose and lipid metabolic functions were weakened from 1-day-old to 42-day-old roosters and then elevated from 42-day-old to 35-week-old roosters. In conclusion, the present study revealed that the metabolomic changes are related to the adaption of liver functions in breeder roosters.
为了解种公鸡出生后肝脏成熟过程中的肝脏代谢变化,我们使用气相色谱 - 质谱联用仪(GC-MS)研究了1日龄、42日龄和35周龄种公鸡的肝脏代谢物组成。应用综合多变量数据分析来鉴定肝脏的差异代谢物。在1日龄和42日龄种公鸡的肝脏之间鉴定出84种不同的差异代谢物,在42日龄和35周龄种公鸡的肝脏之间鉴定出58种不同的差异代谢物。进一步的通路注释显示,在出生后肝脏成熟过程中肝脏代谢发生了广泛重塑。肝脏的抗氧化能力以及碳水化合物、蛋白质、氨基酸、脂肪、胆固醇、核酸和维生素的代谢在出生后的不同生长时期均发生了显著变化。具体而言,我们发现从1日龄到35周龄公鸡,肝脏氨基酸代谢功能持续增强。然而,从1日龄到42日龄公鸡,葡萄糖和脂质代谢功能减弱,然后从42日龄到35周龄公鸡又升高。总之,本研究表明代谢组学变化与种公鸡肝脏功能的适应性有关。