后代
胚胎
生物
怀孕
胚胎发生
男科
生理学
遗传学
医学
细胞生物学
作者
Shijia Pan,Liwen Zhang,Xin Yang,Lumen Wang,Changze Liu,Jia Zhang,Xiaochun Yu,Shu-Kai Qiao,Renpan Zeng,Qian Yu,Tong Li,Xinxin Liu,Junchao Shi,Lei Yan,Ying Zhang
标识
DOI:10.1038/s41467-025-63054-5
摘要
The periconception period is critical for embryo development, pregnancy outcomes, and offspring health. During this stage, oviductal and uterine fluids facilitate embryo-maternal interactions and support early embryonic development. Using PANDORA-seq, we identify a diverse repertoire of small non-coding RNAs in female mouse oviduct fluid and uterine fluid during preimplantation, with tRNA-derived small RNAs and rRNA-derived small RNAs being predominant. Maternal high-fat diet during preimplantation period significantly alters tsRNA and rsRNA expression in oviduct fluid and uterine fluid compared to normal diet, disrupting blastocyst metabolic gene expression. While implantation remained unaffected, these alterations impair mid-gestation embryonic and placental growth, resulting in reduced birth weight and length, as well as metabolic disorders in offspring. Furthermore, transfecting embryos with uterine fluid-derived sncRNAs altered by maternal high-fat diet mimics the in vivo effects. These findings suggest that tsRNAs and rsRNAs in reproductive fluids may reflect maternal metabolic status and transmit dietary information to the early embryo, which might influence pregnancy outcomes and offspring health. Uterine fluid supports early embryo development. This study reveals maternal high-fat diet alters tsRNA/rsRNA profiles in uterine fluid, leading to abnormal embryonic metabolism and offspring disorders, demonstrating a novel mode of RNA-mediated communication.
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