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番鸭胚胎发育过程中脂质和脂肪酸代谢的发育变化以及胚内注射油酸的抑制作用

Developmental changes in lipid and fatty acid metabolism and the inhibition by in ovo feeding oleic acid in Muscovy duck embryogenesis.

作者信息

Zhang Xiufen, Wu Qilin, Zheng Wenxuan, Liu Chuang, Huang Liang, Zuo Xin, Xiao Wenquan, Han Xiaofeng, Ye Hui, Wang Wence, Yang Lin, Zhu Yongwen

机构信息

Guangdong Provincial Key Laboratory of Animal Nutrition and Regulation, College of Animal Science, South China Agricultural University, Guangzhou 510642, China.

Wen's Food Group Co., Ltd, Yunfu 52740, China.

出版信息

Anim Nutr. 2022 Nov 15;12:321-333. doi: 10.1016/j.aninu.2022.10.005. eCollection 2023 Mar.

Abstract

Hepatic lipid and fatty acid (FA) metabolism are critical for regulating energetic homeostasis during embryogenesis. At present, it remains unclear how an exogenous FA intervention affects embryonic development in an avian embryo model. In Exp. 1, 30 fertilized eggs were sampled on embryonic days (E) 16, 19, 22, 25, 28, 31 and the day of hatch (DOH) to determine the critical period of lipid metabolism. In Exp. 2, a total of 120 fertilized eggs were divided into two groups (60 eggs/group) for in ovo feeding (IOF) procedures on E25. Eggs were injected into the yolk sac with PBS as the control group and with oleic acid (OA) as the IOF-OA treatment group. Samples were collected on E28 and E31. In Exp. 1, hepatic triacylglycerol (TG) and cholesterol (CHO) contents increased while serum TG content decreased from E16 to DOH ( 0.05). Both serum and liver displayed an increase in unsaturated FA and a decrease in saturated FA ( 0.05). There was a quadratic increase in the target gene and protein expression related to hepatic FA de novo synthesis and oxidation ( < 0.05), whose inflection period was between E22 and E28. In Exp. 2, compared with the control embryos, IOF-OA embryos had an increased yolk sac TG content on E28 and E31, and a decreased serum TG and CHO content on E28 ( 0.05). The IOF-OA embryos had less OA in the yolk sac and liver on E28, and less unsaturated FA in the serum and liver on E31 than did the control embryos ( 0.05). Hepatic gene mRNA expression related to FA uptake, synthesis, and oxidation on E28 was lower in IOF-OA than in control embryos ( 0.05), not on E31 ( 0.05). Maximal metabolic changes in lipid and FA metabolism occurred on E22-E28 in Muscovy duck embryogenesis, along with the altered target gene and protein expression related to lipogenesis and lipolysis. IOF-OA intervention on E25 could inhibit the target gene expression related to FA uptake, synthesis, and oxidation, which may influence the normal FA metabolism on E28 during embryogenesis.

摘要

肝脏脂质和脂肪酸(FA)代谢对于胚胎发育过程中能量稳态的调节至关重要。目前,尚不清楚外源性FA干预如何影响禽类胚胎模型中的胚胎发育。在实验1中,在胚胎第(E)16、19、22、25、28、31天以及出雏日(DOH)采集30枚受精蛋,以确定脂质代谢的关键时期。在实验2中,总共120枚受精蛋在E25时分为两组(每组60枚蛋)进行胚内注射(IOF)操作。对照组蛋的卵黄囊注射PBS,IOF - OA处理组注射油酸(OA)。在E28和E31采集样本。在实验1中,从E16到DOH,肝脏三酰甘油(TG)和胆固醇(CHO)含量增加,而血清TG含量降低(P<0.05)。血清和肝脏中不饱和FA均增加,饱和FA均降低(P<0.05)。与肝脏FA从头合成和氧化相关的靶基因和蛋白质表达呈二次增加(P<0.05),其拐点在E22和E28之间。在实验2中,与对照胚胎相比,IOF - OA胚胎在E28和E31时卵黄囊TG含量增加,在E28时血清TG和CHO含量降低(P<0.05)。在E28时,IOF - OA胚胎卵黄囊和肝脏中的OA比对照胚胎少,在E31时血清和肝脏中的不饱和FA比对照胚胎少(P<0.05)。在E28时,IOF - OA胚胎中与FA摄取、合成和氧化相关的肝脏基因mRNA表达低于对照胚胎(P<0.05),在E31时无差异(P>0.05)。番鸭胚胎发育过程中脂质和FA代谢的最大变化发生在E22 - E28,同时与脂肪生成和脂肪分解相关的靶基因和蛋白质表达发生改变。在E25进行IOF - OA干预可抑制与FA摄取、合成和氧化相关的靶基因表达,这可能会影响胚胎发育过程中E28时的正常FA代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e93/9873582/38fa7fe35e12/gr1.jpg

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