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万希白鹅胚胎发育过程中卵黄蛋白的蛋白质组学分析。

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

机构信息

College of Animal Science and Technology, Anhui Agricultural University, No. 130, Changjiang West Road, Hefei, Anhui 230036, People's Republic of China.

School of Biological Engineering, Huainan Normal University, 232001, Huainan, Anhui 230036, People's Republic of China.

出版信息

J Agric Food Chem. 2024 Mar 13;72(10):5212-5221. doi: 10.1021/acs.jafc.3c07962. Epub 2024 Mar 3.

Abstract

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.

摘要

为了研究皖南白鹅胚胎发育过程中卵黄蛋白的变化,本研究采用二维凝胶电泳结合质谱技术分析了孵化 0、4、7、14、18 和 25 天(D0、D4、D7、D14、D18 和 D25)的蛋黄蛋白组成。共检测到 65 个斑点,代表 11 种丰度变化显著的蛋白质。载脂蛋白 B-100、卵黄蛋白原 1、卵黄蛋白原 2 样蛋白、核黄素结合蛋白和血清转铁蛋白主要参与营养物质(脂质、核黄素和铁离子)的转运,D14 后卵黄蛋白原 2 样蛋白的丰度降低。卵类黏蛋白样蛋白参与内肽酶抑制活性和免疫球蛋白结合,D18 后表达量升高,提示其可能在促进免疫球蛋白吸收和为鹅胚胎提供被动免疫保护方面发挥作用。此外,肌球蛋白 9 和肌动蛋白(ACTB)参与紧密连接途径,可能有助于维持屏障完整性。血清白蛋白主要参与细胞溶解和有毒物质结合。因此,孵化过程中血清白蛋白、肌球蛋白 9 和 ACTB 的高表达可能保护发育中的胚胎。载脂蛋白 B-100、卵黄蛋白原 1、卵黄蛋白原 2 样蛋白、核黄素结合蛋白和血清转铁蛋白可能在为胚胎发育提供营养方面发挥关键作用,而卵黄蛋白原 2 样蛋白则优先被降解/吸收。

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