Proteomic Analysis of Egg Yolk Proteins During Embryonic Development in Wanxi White Goose

卵黄原蛋白 蛋黄 蛋清 白蛋白 载脂蛋白B 生物 胚胎 生物化学 分子生物学 化学 细胞生物学 胆固醇 基因 生态学
作者
Linghong Sun,Zhengkun Chen,Liping Guo,Zhaoyu Geng,Xingyong Chen
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:72 (10): 5212-5221
标识
DOI:10.1021/acs.jafc.3c07962
摘要

To investigate the alterations of yolk protein during embryonic development in Wanxi white goose, the egg yolk protein composition at days 0, 4, 7, 14, 18, and 25 of incubation (D0, D4, D7, D14, D18, and D25) was analyzed by two-dimensional gel electrophoresis combined with mass spectrometry. A total of 65 spots representing 11 proteins with significant abundance changes were detected. Apolipoprotein B-100, vitellogenin-1, vitellogenin-2-like, riboflavin-binding protein, and serotransferrin mainly participated in nutrient (lipid, riboflavin, and iron ion) transport, and vitellogenin-2-like showed a lower abundance after D14. Ovomucoid-like were involved in endopeptidase inhibitory activity and immunoglobulin binding and exhibited a higher expression after D18, suggesting a potential role in promoting the absorption of immunoglobulin and providing passive immune protection for goose embryos after D18. Furthermore, myosin-9 and actin (ACTB) were involved in the tight junction pathway, potentially contributing to barrier integrity. Serum albumin mainly participated in cytolysis and toxic substance binding. Therefore, the high expression of serum albumin, myosin-9, and ACTB throughout the incubation might protect the developing embryo. Apolipoprotein B-100, vitellogenin-1, vitellogenin-2-like, riboflavin-binding protein, and serotransferrin might play a crucial role in providing nutrition for embryonic development, and VTG-2-like was preferentially degraded/absorbed.
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