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Parental vitamin deficiency affects the embryonic gene expression of immune-, lipid transport- and apolipoprotein genes

机译:亲本维生素缺乏影响免疫,脂质转运和载脂蛋白基因的胚胎基因表达

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World Health Organization is concerned for parental vitamin deficiency and its effect on offspring health. This study examines the effect of a marginally dietary-induced parental one carbon (1-C) micronutrient deficiency on embryonic gene expression using zebrafish. Metabolic profiling revealed a reduced 1-C cycle efficiency in F0 generation. Parental deficiency reduced the fecundity and a total of 364 genes were differentially expressed in the F1 embryos. The upregulated genes (53%) in the deficient group were enriched in biological processes such as immune response and blood coagulation. Several genes encoding enzymes essential for the 1-C cycle and for lipid transport (especially apolipoproteins) were aberrantly expressed. We show that a parental diet deficient in micronutrients disturbs the expression in descendant embryos of genes associated with overall health, and result in inherited aberrations in the 1-C cycle and lipid metabolism. This emphasises the importance of parental micronutrient status for the health of the offspring.
机译:世界卫生组织担心父母生命维生素缺乏及其对后代健康的影响。本研究审查了使用斑马鱼胚胎基因表达对胚胎基因表达对胚胎基因表达的效果诱导的父母诱导的亲本碳(1-C)微量营养性缺陷。代谢分析显示F0代中的1-C循环效率降低。父母缺陷降低了繁殖力,并且总共364个基因在F1胚胎中差异表达。缺乏组中的上调基因(53%)在生物过程中富集,例如免疫应答和血液凝固。异常表达几种编码对1-C循环和脂质传输(特别是载脂蛋白)必需酶的几种基因。我们表明,微量营养素缺乏的父母饮食扰乱了与总体健康相关的基因的后代胚胎中的表达,并导致1-C循环和脂质代谢中的遗传畸变。这强调了父母微量营养素地位对后代健康状况的重要性。

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