Effect of paternal aging and vitrification on mitochondrial DNA copy number and telomere length of mouse blastocysts.

IF 1.9 4区 生物学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Reproduction and Development Pub Date : 2024-04-04 Epub Date: 2024-01-25 DOI:10.1262/jrd.2023-079
Nao Aburada, Jun Ito, Yuki Inoue, Taiyo Yamamoto, Masamune Hayashi, Noko Teramoto, Yuri Okada, Yuichi Koshiishi, Koumei Shirasuna, Hisataka Iwata
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Abstract

In this study, we examined the effects of paternal aging on the mitochondrial DNA copy number (mt-cn), telomere length (TL), and gene expression in mouse embryos. The effects of vitrification on the mt-cn and TL of the embryos derived from young and aged male parents (YF and AF, respectively) were examined. C57BL/6N male mice were used for embryo production at 13-23 and 50-55 weeks of age. Two-cell stage embryos were collected from the oviducts of superovulated female mice (8-15 weeks old) and cultured for 24 h until the 8-cell stage, followed by embryo vitrification. Fresh and vitrified-warmed embryos were incubated for 2 days until the blastocyst stage, and mt-cn and TL were investigated. The cell-free mitochondrial DNA copy number (cf-mt-cn) in the spent culture medium (SCM) of the embryos was then investigated. RNA sequencing of blastocysts revealed that metabolic pathways, including oxidative phosphorylation and mTOR pathways, were enriched in differentially expressed genes. The mt-cn and TL of AF-derived blastocysts were lower and shorter, respectively, than those of YF-derived blastocysts. Paternal aging did not affect the blastocyst rate after vitrification. Vitrification of the 8-cell stage embryos did not affect the mt-cn of the blastocysts. However, it increased the cf-mt-cn (cell-free mt-cn) in the SCM of both YF- and AF-derived embryos. Vitrification did not affect the TL of either YF- or AF-derived embryos. Thus, paternal aging affected the mt-cn and TL of the embryos, but vitrification did not affect these parameters in either age groups.

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父亲衰老和玻璃化对小鼠胚泡线粒体 DNA 拷贝数和端粒长度的影响
在这项研究中,我们考察了父亲衰老对小鼠胚胎线粒体DNA拷贝数(mt-cn)、端粒长度(TL)和基因表达的影响。研究考察了玻璃化对来自年轻和衰老雄性亲本(分别为 YF 和 AF)的胚胎 mt-cn 和端粒长度的影响。C57BL/6N 雄性小鼠分别在 13-23 周龄和 50-55 周龄生产胚胎。从超排卵雌性小鼠(8-15 周龄)的输卵管中收集两细胞期胚胎,培养 24 小时至 8 细胞期,然后进行胚胎玻璃化。将新鲜胚胎和玻璃化温育胚胎培养 2 天至囊胚期,并研究 mt-cn 和 TL。然后调查胚胎废培养基(SCM)中的无细胞线粒体 DNA 拷贝数(cf-mt-cn)。囊胚的 RNA 测序显示,代谢途径(包括氧化磷酸化和 mTOR 途径)富含差异表达基因。与 YF 胚胎相比,AF 胚胎的 mt-cn 和 TL 分别较低和较短。父本老化不影响玻璃化后的囊胚率。8 细胞期胚胎的玻璃化不会影响囊胚的 mt-cn。然而,它增加了 YF 和 AF 衍生胚胎单CM 中的 cf-mt-cn(无细胞 mt-cn)。玻璃化不会影响 YF 或 AF 衍生胚胎的 TL。因此,父系衰老会影响胚胎的mt-cn和TL,但玻璃化处理对两个年龄组的这些参数都没有影响。
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来源期刊
Journal of Reproduction and Development
Journal of Reproduction and Development 生物-奶制品与动物科学
CiteScore
3.70
自引率
11.10%
发文量
52
审稿时长
2 months
期刊介绍: Journal of Reproduction and Development (JRD) is the official journal of the Society for Reproduction and Development, published bimonthly, and welcomes original articles. JRD provides free full-text access of all the published articles on the web. The functions of the journal are managed by Editorial Board Members, such as the Editor-in-Chief, Co-Editor-inChief, Managing Editors and Editors. All manuscripts are peer-reviewed critically by two or more reviewers. Acceptance is based on scientific content and presentation of the materials. The Editors select reviewers and correspond with authors. Final decisions about acceptance or rejection of manuscripts are made by the Editor-in-Chief and Co-Editor-in-Chief.
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