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Developmental Stage, Muscle and Genetic Type Modify Muscle Transcriptome in Pigs: Effects on Gene Expression and Regulatory Factors Involved in Growth and Metabolism

机译:猪的发育阶段,肌肉和遗传类型改变了肌肉转录组:对基因表达和参与生长和代谢的调节因子的影响

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摘要

Iberian pig production includes purebred (IB) and Duroc-crossbred (IBxDU) pigs, which show important differences in growth, fattening and tissue composition. This experiment was conducted to investigate the effects of genetic type and muscle (Longissimus dorsi (LD) vs Biceps femoris (BF)) on gene expression and transcriptional regulation at two developmental stages. Nine IB and 10 IBxDU piglets were slaughtered at birth, and seven IB and 10 IBxDU at four months of age (growing period). Carcass traits and LD intramuscular fat (IMF) content were measured. Muscle transcriptome was analyzed on LD samples with RNA-Seq technology. Carcasses were smaller in IB than in IBxDU neonates (p < 0.001), while growing IB pigs showed greater IMF content (p < 0.05). Gene expression was affected (p < 0.01 and Fold change > 1.5) by the developmental stage (5,812 genes), muscle type (135 genes), and genetic type (261 genes at birth and 113 at growth). Newborns transcriptome reflected a highly proliferative developmental stage, while older pigs showed upregulation of catabolic and muscle functioning processes. Regarding the genetic type effect, IBxDU newborns showed enrichment of gene pathways involved in muscle growth, in agreement with the higher prenatal growth observed in these pigs. However, IB growing pigs showed enrichment of pathways involved in protein deposition and cellular growth, supporting the compensatory gain experienced by IB pigs during this period. Moreover, newborn and growing IB pigs showed more active glucose and lipid metabolism than IBxDU pigs. Moreover, LD muscle seems to have more active muscular and cell growth, while BF points towards lipid metabolism and fat deposition. Several regulators controlling transcriptome changes in both genotypes were identified across muscles and ages (SIM1, PVALB, MEFs, TCF7L2 or FOXO1), being strong candidate genes to drive expression and thus, phenotypic differences between IB and IBxDU pigs. Many of the identified regulators were known to be involved in muscle and adipose tissues development, but others not previously associated with pig muscle growth were also identified, as PVALB, KLF1 or IRF2. The present study discloses potential molecular mechanisms underlying phenotypic differences observed between IB and IBxDU pigs and highlights candidate genes implicated in these molecular mechanisms.
机译:伊比利亚猪的生产包括纯种(IB)和杜洛克杂交(IBxDU)猪,它们在生长,育肥和组织组成方面显示出重要差异。进行该实验以研究遗传类型和肌肉(背最长背LD(LD)与股二头肌(BF))在两个发育阶段对基因表达和转录调控的影响。出生时宰杀了9头IB和10 IBxDU仔猪,在四个月龄(成长期)处死了7 IB和10 IBxDU仔猪。测量体性状和LD肌内脂肪(IMF)含量。使用RNA-Seq技术在LD样品上分析了肌肉转录组。 IB中的cas体比IBxDU新生儿小(p <0.001),而生长中的IB猪显示更高的IMF含量(p <0.05)。基因表达受到发育阶段(5,812个基因),肌肉类型(135个基因)和遗传类型(出生时的261个基因和生长时的113个基因)的影响(p <0.01和倍数变化> 1.5)。新生儿的转录组反映出高度增殖的发育阶段,而年长的猪则显示出分解代谢和肌肉功能过程的上调。关于遗传类型效应,IBxDU新生儿表现出参与肌肉生长的基因途径的丰富,这与这些猪中观察到的较高的产前生长一致。但是,生长中的IB猪表现出参与蛋白质沉积和细胞生长的途径的富集,从而支持了IB猪在此期间所经历的代偿性增长。此外,新生和成长中的IB猪比IBxDU猪表现出更多的活性葡萄糖和脂质代谢。此外,LD肌肉似乎具有更活跃的肌肉和细胞生长,而BF则指向脂质代谢和脂肪沉积。跨肌肉和不同年龄(SIM1,PVALB,MEF,TCF7L2或FOXO1)鉴定了几种控制两种基因型转录组变化的调节剂,它们是驱动表达的强候选基因,因此是IB和IBxDU猪之间的表型差异。已知许多已确定的调节剂与肌肉和脂肪组织的发育有关,但以前也未与猪肌肉生长相关的其他调节剂也被鉴定为PVALB,KLF1或IRF2。本研究揭示了在IB和IBxDU猪之间观察到的表型差异的潜在分子机制,并强调了与这些分子机制有关的候选基因。

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