Beta-hydroxybutyrate alters bovine preimplantation embryo development through transcriptional and epigenetic mechanisms†.

IF 3.1 2区 生物学 Q2 REPRODUCTIVE BIOLOGY
Juliano Rodrigues Sangalli, Ricardo Perecin Nociti, Marcos Roberto Chiaratti, Alessandra Bridi, Ramon Cesar Botigelli, Dewison Ricardo Ambrizi, Helena Fabiana Reis de Almeida Saraiva, Felipe Perecin, Juliano Coelho da Silveira, Pablo Juan Ross, Flávio Vieira Meirelles
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Abstract

Developing embryos are susceptible to fluctuations in the nutrients and metabolites concentrations within the reproductive tract, which can lead to alterations in their developmental trajectory. Ketotic dairy cows have diminished fertility, and elevated levels of the ketone body beta-hydroxybutyrate (BHB) have been associated with poor embryonic development. We used an in vitro model based on either in vitro fertilization (IVF) or parthenogenesis to investigate the effects of BHB on the preimplantation bovine embryo development, epigenome, and transcriptome. Embryo culture medium was supplemented with BHB at a similar concentration to that present in the blood of cows suffering with severe ketosis, followed by analysis of blastocysts formation rate, diameter, total number of cells, levels of H3K9 beta-hydroxybutyrylation (H3K9bhb), apoptosis, and transcriptional alterations. As a result, we observed that BHB reduced the blastocysts rates, the diameter and the total number of cells in both parthenotes and IVF embryos. Exposure to BHB for either 3 or 7 days greatly increased the H3K9bhb levels in parthenotes at the 8-cells and blastocyst stages, and affected the expression of HDAC1, TET1, DNMT1, KDM6B, NANOG, and MTHFD2 genes. Additionally, culture of IVF embryos with BHB for 7 days dramatically increased H3K9bhb and reduced NANOG in blastocysts. RNA-seq analysis of IVF blastocysts revealed that BHB modulated the expression of 118 genes, which were involved with biological processes such as embryonic development, implantation, reproduction, proliferation, and metabolism. These findings provided valuable insights into the mechanisms through which BHB disrupts preimplantation embryonic development and affects the fertility in dairy cows.

β -羟基丁酸通过转录和表观遗传机制改变牛着床前胚胎发育†。
发育中的胚胎易受生殖道内营养物质和代谢物浓度波动的影响,这可能导致其发育轨迹的改变。生酮奶牛的生育能力下降,酮体β -羟基丁酸酯(BHB)水平升高与胚胎发育不良有关。我们采用体外受精(IVF)或孤雌生殖的体外模型来研究BHB对着床前牛胚胎发育、表观基因组和转录组的影响。在胚胎培养基中添加与严重酮症奶牛血液中相似浓度的BHB,然后分析囊胚形成率、直径、细胞总数、H3K9 β -羟基丁基化(H3K9bhb)水平、凋亡和转录改变。结果,我们观察到BHB降低了孤雌和体外受精胚胎的囊胚率、囊胚直径和囊胚总数。暴露于BHB 3天或7天可显著提高孤雌体8细胞期和囊胚期H3K9bhb水平,并影响HDAC1、TET1、DNMT1、KDM6B、NANOG和MTHFD2基因的表达。此外,用BHB培养体外受精胚胎7天可显著提高囊胚的H3K9bhb,降低NANOG。体外受精胚泡RNA-seq分析显示,BHB调节了118个基因的表达,这些基因参与了胚胎发育、着床、繁殖、增殖和代谢等生物学过程。这些发现为BHB破坏着床前胚胎发育和影响奶牛生育力的机制提供了有价值的见解。
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来源期刊
Biology of Reproduction
Biology of Reproduction 生物-生殖生物学
CiteScore
6.30
自引率
5.60%
发文量
214
审稿时长
1 months
期刊介绍: Biology of Reproduction (BOR) is the official journal of the Society for the Study of Reproduction and publishes original research on a broad range of topics in the field of reproductive biology, as well as reviews on topics of current importance or controversy. BOR is consistently one of the most highly cited journals publishing original research in the field of reproductive biology.
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