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妊娠期间补充地面牛肉和蔗糖会影响猪模型中与代谢功能相关的基因的胎儿表达。

Fetal expression of genes related to metabolic function is impacted by supplementation of ground beef and sucrose during gestation in a swine model.

机构信息

Department of Animal Sciences, North Dakota State University, Fargo, ND.

Outcomes Research, Zoetis Inc., Parsippany, NJ.

出版信息

J Anim Sci. 2020 Aug 1;98(8). doi: 10.1093/jas/skaa232.

Abstract

To determine the effects of maternal supplementation on the mRNA abundance of genes associated with metabolic function in fetal muscle and liver, pregnant sows (Landrace × Yorkshire; initial body weight (BW) 221.58 ± 33.26 kg; n = 21) fed a complete gestation diet (corn-soybean meal based diet, CSM) were randomly assigned to 1 of 4 isocaloric supplementation treatments: control (CON, 378 g/d CSM, n = 5), sucrose (SUGAR, 255 g/d crystalized sugar, n = 5), cooked ground beef (BEEF, 330 g/d n = 6), or BEEF + SUGAR (B+S, 165 g/d cooked ground beef and 129 g/d crystalized sugar, n = 5), from days 40 to 110 of gestation. Sows were euthanized on day 111 of gestation. Two male and 2 female fetuses of median BW were selected from each litter, and samples of the longissimus dorsi muscle and liver were collected. Relative transcript level was quantified via qPCR with HPRT1 as the reference gene for both muscle and liver samples. The following genes were selected and analyzed in the muscle: IGF1R, IGF2, IGF2R, GYS-1, IRS-1, INSR, SREBP-1C, and LEPR; while the following were analyzed in the liver: IGF2, IGF2R, FBFase, G6PC, PC, PCK1, FGF21, and LIPC. No effect of fetal sex by maternal treatment interaction was observed in mRNA abundance of any of the genes evaluated (P > 0.11). In muscle, the maternal nutritional treatment influenced (P = 0.02) IGF2 mRNA abundance, with B+S and SUGAR fetuses having lower abundance than CON, which was not different from BEEF. Additionally, SREBP-1 mRNA abundance was greater (P < 0.01) for B+S compared with CON, BEEF, or SUGAR fetuses; and females tended (P = 0.06) to have an increased abundance of SREBP-1 than males. In fetal liver, IGF2R mRNA abundance was greater (P = 0.01) for CON and BEEF than SUGAR and B+S; while FBPase mRNA abundance was greater (P = 0.03) for B+S compared with the other groups. In addition, maternal nutritional tended (P = 0.06) to influence LIPC mRNA abundance, with increased abundance in CON compared with SUGAR and B+S. These data indicate limited changes in transcript abundance due to substitution of supplemental sugar by ground beef during mid to late gestation. However, the differential expression of FBPase and SREBP-1c in response to the simultaneous supplementation of sucrose and ground beef warrants further investigations, since these genes may play important roles in determining the offspring susceptibility to metabolic diseases.

摘要

为了确定母体补充对胎儿肌肉和肝脏代谢功能相关基因的 mRNA 丰度的影响,妊娠母猪(长白猪×约克夏;初始体重(BW)221.58±33.26kg;n=21)饲喂完全妊娠日粮(以玉米-豆粕为基础的日粮,CSM),随机分为 4 种等热量补充处理组之一:对照组(CON,378g/d CSM,n=5)、蔗糖(SUGAR,255g/d 结晶糖,n=5)、煮碎牛肉(BEEF,n=6,330g/d)或煮碎牛肉+蔗糖(B+S,n=5,165g/d 煮碎牛肉和 129g/d 结晶糖),从妊娠第 40 天到第 110 天。妊娠第 111 天处死母猪。每个窝中选择 2 个公仔和 2 个母仔,从中部选择 2 个 BW 中位数的胎儿,采集背最长肌和肝脏样本。使用 HPRT1 作为肌肉和肝脏样本的参考基因,通过 qPCR 定量相对转录水平。在肌肉中选择并分析了以下基因:IGF1R、IGF2、IGF2R、GYS-1、IRS-1、INSR、SREBP-1C 和 LEPR;在肝脏中分析了以下基因:IGF2、IGF2R、FBFase、G6PC、PC、PCK1、FGF21 和 LIPC。在任何评估基因的 mRNA 丰度中,均未观察到胎儿性别与母体处理的相互作用(P>0.11)。在肌肉中,母体营养处理影响(P=0.02)IGF2mRNA 丰度,B+S 和 SUGAR 胎儿的丰度低于 CON,与 BEEF 无差异。此外,B+S 胎儿的 SREBP-1mRNA 丰度大于(P<0.01)CON、BEEF 或 SUGAR 胎儿;雌性 SREBP-1 的丰度倾向于(P=0.06)高于雄性。在胎儿肝脏中,CON 和 BEEF 胎儿的 IGF2RmRNA 丰度大于(P=0.01)SUGAR 和 B+S;而 B+S 胎儿的 FBPase mRNA 丰度大于(P=0.03)其他组。此外,母体营养处理有增加(P=0.06)LIPCmRNA 丰度的趋势,与 SUGAR 和 B+S 相比,CON 增加。这些数据表明,在妊娠中期至晚期用碎牛肉替代补充糖,导致转录丰度的变化有限。然而,由于蔗糖和碎牛肉的同时补充,FBPase 和 SREBP-1c 的差异表达值得进一步研究,因为这些基因可能在决定后代对代谢疾病的易感性方面发挥重要作用。

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