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首页> 外文期刊>The FASEB Journal >Epigenomic and transcriptomic analyses reveal early activation of the HPG axis in in vitro-produced male dairy calves
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Epigenomic and transcriptomic analyses reveal early activation of the HPG axis in in vitro-produced male dairy calves

机译:表观脑和转录组分析揭示了在体外制作的母乳灰中HPG轴的早期活化

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In cattle,several calves born afterIVP (“in vitro” embryo production) presentsimilar birthweight to those generated after MOET (multiple ovulation and embryo transfer). However, the underlying molecular patterns in organs involved in the developmental process are unknown and could indicate physiological programming. The objectives of this study were: (1) to compare epigenomic and transcriptomic modifications in the hypothalamus, pituitary, gonadal and adrenal organs between 3 months old ovum pick-up-IVP and MOET male calves (n = 4 per group) and (2) to use blood epigenomic data to proxy methylation of the inner organs. Extracted gDNA and RNA were sequenced through whole-genome bisulfite sequencing and RNA sequencing, respectively. Next, bioinformatic analyses determined differentially methylated cytosines (DMC) and differentially expressed genes(DEG) (FDR < 0.05) in IVP versus MOET samples and the KEGG pathways that were overrepresented by genes associated with DMC or DEG (FDR < 0.1). Pathways related to hypothalamus, pituitary, gonadal (HPG) axis activation (GnRH secretion in the hypothalamus, GnRH signaling in the pituitary, and steroidogenesis in the testicle) were enriched in IVP calves. Modeling the effect of the methylation levels and the group on the expression of all the genes involved in these pathways confirmed their upregulation in HPG organs in IVP calves. The application of the DIABLO method allowed the identification of 15 epigenetic and five transcriptomic biomarkers, which were able to predict the embryo origin using the epigenomic data from the blood. In conclusion, the use of an integrated epigenomic-transcriptomic approach suggested an early activation of the HPG axis in male IVP calves compared to MOET counterparts, and the identification of potential biomarkers allowed the use of blood samples to proxy methylation levels of the relevant internal organs.
机译:在牛中,几个小牛出生的后钙(“体外”胚胎生产)占MOT(多种排卵和胚胎转移)产生的那些产生的分类。然而,涉及发育过程中涉及的器官的潜在分子模式是未知的并且可以表明生理编程。本研究的目的是:(1)在丘脑中的卵形痘痘,垂体,性腺和肾上腺器官中比较表述和转录组,3个月ovum挑选IVP和Moet雄性小牛(N = 4每组)和(2 )使用血液表观胶质数据来代理内器官的甲基化。通过全基因组亚硫酸氢盐测序和RNA测序分别对提取的GDNA和RNA进行测序。接下来,生物信息分析在IVP与MOET样品中确定的差异甲基化胞嘧啶(DMC)和差异表达基因(FDR <0.05),并通过与DMC或DEG(FDR <0.1)相关的基因过度呈现的KEGG途径。与丘脑,垂体,性腺(HPG)轴激活(下丘脑中的GNRH分泌,脑垂体中的GNRH信号传导和睾丸中的睾丸中的睾丸中的GNRH信号传导)相关的途径在IVP犊牛中富集。模拟甲基化水平和基团对这些途径中涉及的所有基因表达的影响证实了其在IVP犊牛中的HPG器官中的上调。暗黑破坏孔方法的应用允许鉴定15个表观遗传学和五种转录组生物标志物,其能够使用来自血液的表观胶质数据来预测胚胎来源。总之,使用集成的表观脑传递方法方法表明,与MOET对应物相比,使用雄性IVP犊牛中HPG轴的早期活化,并且潜在的生物标志物的鉴定允许使用血液样品来代理相关内器官的甲基化水平。

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