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Energy and lipid metabolism gene expression of D18 embryos in dairy cows is related to dam physiological status

机译:奶牛D18胚胎能量和脂质代谢基因表达与大坝生理状态的关系

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Valour D, Degrelle SA, Ponter AA, Giraud-Delville C, Campion E, Guyader-Joly C, Richard C, Constant F, Humblot P, Ponsart C, Hue I, Grimard B. Energy and lipid metabolism gene expression of D18 embryos in dairy cows is related to dam physiological status. Physiol Genomics 46: 39-56, 2014. First published November 12, 2013; doi:10.1152/physiolgenomics.00091.2013.-We analyzed the change in gene expression related to dam physiological status in day (D)18 embryos from growing heifers (GH), early lactating cows (ELC), and late lactating cows (LLC). Dam energy metabolism was characterized by measurement of circulating concentrations of insulin, glucose, IGF-1, nonesterified fatty acids, β-hydroxybutyrate, and urea before embryo flush. The metabolic parameters were related to differential gene expression in the extraembryonic tissues by correlation analysis. Embryo development estimated by measuring the length of the conceptuses and the proportion of expected D18 gastrulating stages was not different between the three groups of females. However, embryo metabolism was greatly affected by dam physiological status when we compared GH with ELC and GH with LLC but to a lesser extent when ELC was compared with LLC. Genes involved in glucose, pyruvate, and acetate utilization were upregulated in GH vs. ELC conceptuses (e.g., SLC2A1, PC, ACSS2, ACSS3). This was also true for the pentose pathway (PGD, TKT), which is involved in synthesis of ribose precursors of RNA and DNA. The pathways involved in lipid synthesis were also upregulated in GH vs. ELC. Despite similar morphological development, the molecular characteristics of the heifers' embryos were consistently different from those of the cows. Most of these differences were strongly related to metabolic/hormone patterns before insemination and during conceptus free-life. Many biosynthetic pathways appeared to be more active in heifer embryos than in cow embryos, and consequently they seemed to be healthier, and this may be more conducive to continue development.
机译:Valor D,Degrelle SA,Ponter AA,Giraud-Delville C,Campi E,Guyader-Joly C,Richard C,Constant F,Humblot P,Ponsart C,Hue I,Grimard B.D18胚胎在体内的能量和脂质代谢基因表达奶牛与大坝的生理状态有关。 Physiol Genomics 46:39-56,2014年。2013年11月12日首次发布。 doi:10.1152 / physiolgenomics.00091.2013.-我们分析了成长小母牛(GH),早期泌乳母牛(ELC)和晚期泌乳母牛(LLC)在第(D)天18个胚胎中与大坝生理状态相关的基因表达变化。大坝能量代谢的特征是在胚胎冲洗前测量胰岛素,葡萄糖,IGF-1,非酯化脂肪酸,β-羟基丁酸酯和尿素的循环浓度。通过相关分析,代谢参数与胚外组织中差异基因表达有关。在三组雌性动物中,通过测量概念长度和预期的D18胃化阶段的比例来估计胚胎发育没有差异。但是,当我们将GH与ELC和GH与LLC进行比较时,胚胎的代谢受大坝生理状态的影响很大,但是当ELC与LLC进行比较时,其代谢程度较小。在GH与ELC概念中,涉及葡萄糖,丙酮酸和乙酸盐利用的基因被上调(例如SLC2A1,PC,ACSS2,ACSS3)。对于戊糖途径(PGD,TKT)也是如此,其参与RNA和DNA的核糖前体的合成。在GH与ELC中,与脂质合成有关的途径也被上调。尽管形态相似,但小母牛的胚胎的分子特征与母牛的一致。这些差异中的大多数与授精前和概念自由寿命期间的代谢/激素模式密切相关。小母牛胚胎中的许多生物合成途径似乎比母牛胚胎中的更为活跃,因此它们似乎更健康,这可能更有利于继续发育。

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