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Metabolomic analysis of the egg yolk during the embryonic development of broilers

机译:肉鸡胚胎发育过程中蛋黄的代谢组分分析

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摘要

The chicken egg yolk, which is abundant with lipids, proteins, and minerals, is the major nutrient resource for the embryonic development. In fact, the magnitude and type of yolk nutrients are dynamically changed during the chicken embryogenesis to meet the developmental and nutritional requests at different stages. The yolk nutrients are metabolized and absorbed by the yolk sac membrane and then used by the embryo or other extraembryonic tissues. Thus, understanding the metabolites in the yolk helps to unveil the developmental nutritional requirements for the chicken embryo. In this study, we performed ultra high performance liquid chromatography/tandem mass spectrometry (UHPLC-MS/MS) analysis to investigate the change of metabolites in the egg yolk at embryonic (E) 07, E09, E11, E15, E17, and E19. The results showed that 1) the egg yolk metabolites at E07 and E09 were approximately similar, but E09, E11, E15, E17, and E19 were different from each other, indicating the developmental and metabolic change of the egg yolk; and 2) most of the metabolites were annotated in amino acid metabolism pathways from E11 to E15 and E17 to E19. Especially, arginine, lysine, cysteine, and histidine were continuously increased during the embryonic development, probably because of their effects on the growth promotion and oxidative stress amelioration of the embryo. Interestingly, the ferroptosis was found as one of major processes occurred from E15 to E17 and E17 to E19. Owing to the upregulated expression of acyl-CoA synthetase long-chain family member 4 detected in the yolk sac, we assumed that the ferroptosis of the yolk sac was perhaps caused by the accumulation of reactive oxygen species, which was induced by the large amount of polyunsaturated fatty acids and influx of iron in the yolk. Our findings might offer a novel understanding of embryonic nutrition of broilers according to the developmental changes of metabolites in the egg yolk and may provide new ideas to improve the health and nutrition for prehatch broiler chickens.
机译:鸡蛋黄,这是丰富,脂质,蛋白质和矿物质,是胚胎发育的主要营养成分的资源。事实上,蛋黄的营养物质的大小和类型鸡胚胎发育过程中的动态变化,以满足不同阶段的发育和营养需求。蛋黄营养物代谢和由卵黄囊膜吸收,然后由胚胎或其他胚外组织中。因此,在蛋黄理解代谢产物有助于揭开了鸡胚胎发育的营养需求。在这项研究中,我们进行了超高效液相色谱/串联质谱(UHPLC-MS / MS)分析,以研究在蛋黄代谢物在胚胎(E)的变化07,E09,E11,E15,E17和E19 。结果表明,1)蛋黄在E07和E09代谢物大致相似,但E09,E11,E15,E17,E19和来自彼此不同,表示蛋黄的发育和代谢改变;和2)的大部分代谢物在从E11氨基酸代谢途径E15和E17至E19进行了注释。特别是,精氨酸,赖氨酸,半胱氨酸和组氨酸连续胚胎发育过程中增加的可能是因为他们对促进生长和胚胎的氧化应激的影响改善。有趣的是,ferroptosis发现的主要工艺之一,从发生到E15 E17 E17和E19来。由于的上调表达酰基-CoA合成酶在卵黄囊检测长链家族成员4中,我们假设卵黄囊的ferroptosis也许由活性氧物质的积累,这是诱导大量的导致多不饱和脂肪酸和铁在蛋黄的涌入。我们的研究结果可能会提供根据蛋黄代谢产物的发展变化肉鸡胚胎营养的新理解,可以提供新的思路,以改善prehatch肉鸡的健康和营养。

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