Marín-García Pablo Jesús, Llobat Lola
Departamento Producción y Sanidad Animal, Salud Pública y Ciencia y Tecnología de los Alimentos, Facultad de Veterinaria, Universidad Cardenal Herrera-CEU, CEU Universities, 46010 Valencia, Spain.
Grupo de Fisiopatología de la Reproducción, Departamento Producción y Sanidad Animal, Salud Pública y Ciencia y Tecnología de los Alimentos, Facultad de Veterinaria, Universidad Cardenal Herrera-CEU, CEU Universities, 46010 Valencia, Spain.
Animals (Basel). 2021 Feb 19;11(2):544. doi: 10.3390/ani11020544.
Epigenetic changes regulate gene expression and depend of external factors, such as environment and nutrition. In pigs, several studies on protein nutrition have been performed to improve productive and reproductive traits. Indeed, these studies aimed not only to determine broad protein requirements but also pigs' essential amino acids requirements. Moreover, recent studies tried to determine these nutritional requirements for each individual, which is known as protein precision nutrition. However, nutritional changes could affect different epigenetic mechanisms, modifying metabolic pathways both in a given individual and its offspring. Modifications in protein nutrition, such as change in the amino acid profile, increase or decrease in protein levels, or the addition of metabolites that condition protein requirements, could affect the regulation of some genes, such as myostatin, insulin growth factor, or genes controlling cholesterol and glucose metabolism pathways. This review summarizes the impact of most common protein nutritional strategies on epigenetic changes and describes their effects on regulation of gene expression in pigs. In a context where animal nutrition is shifting towards precision protein nutrition (PPN), further studies evaluating the effects of PPN on animal epigenetic are necessary.
表观遗传变化调节基因表达,并取决于外部因素,如环境和营养。在猪身上,已经进行了几项关于蛋白质营养的研究,以改善生产性能和繁殖性状。事实上,这些研究不仅旨在确定大致的蛋白质需求,还旨在确定猪的必需氨基酸需求。此外,最近的研究试图确定每个个体的这些营养需求,这被称为蛋白质精准营养。然而,营养变化可能会影响不同的表观遗传机制,在特定个体及其后代中改变代谢途径。蛋白质营养的改变,如氨基酸谱的变化、蛋白质水平的增加或减少,或添加调节蛋白质需求的代谢物,可能会影响某些基因的调控,如肌肉生长抑制素、胰岛素生长因子,或控制胆固醇和葡萄糖代谢途径的基因。本文综述总结了最常见的蛋白质营养策略对表观遗传变化的影响,并描述了它们对猪基因表达调控的作用。在动物营养正朝着精准蛋白质营养(PPN)转变的背景下,有必要进一步开展评估PPN对动物表观遗传影响的研究。