Abeysinghe Pevindu, Turner Natalie, Flay Holly, Meier Susanne, Cuttle Leila, Mitchell Murray D
Centre for Children's Health Research, School of Biomedical Sciences, Faculty of Health Queensland University of Technology Brisbane Queensland Australia.
Centre for Genomics and Personalised Health, KG-Q, School of Biomedical Sciences, Faculty of Health Queensland University of Technology Kelvin Grove Brisbane Queensland Australia.
J Extracell Biol. 2025 Sep 1;4(9):e70084. doi: 10.1002/jex2.70084. eCollection 2025 Sep.
Pregnancy and live birth rates are commonly used metrics to define fertility in humans and animals. The impact of aberrant microRNA (miRNA) expression on fertility-related genes represents a significant knowledge gap in understanding post-transcriptional regulatory mechanisms associated with reproductive dysfunction. Identifying subfertility markers is therefore critical to the success of fertility intervention strategies, particularly in agriculture, where sustainable farming practices are linked to overall economic performance. Here, we explore the expression patterns and association of blood plasma small extracellular vesicles (sEV)-derived miRNA with Holstein-Friesian dairy cow () subfertility. Small RNA-seq identified 14 differentially expressed plasma sEV-derived miRNAs (FDR < 0.05 and -logFC > 2) between divergent low fertile (LF) and high fertile (HF) primiparous dairy cows ( = 10/group) with known reproductive outcomes. qRT-PCR miRNA assay validation of these plasma sEV miRNA candidates isolated from a different sample population of young heifers (10 month old) (LF and HF; = 8/group) confirmed that the abundance of miR-181b-2-3p was significantly higher in LF sEVs compared to HF sEVs [ value = 0.0093, relative expression ratio = 2.665 (2; LF = 19.6095, HF = 7.35636)]. Our results suggest that circulating sEV miRNA may contribute, in part, to fertility traits in dairy cows. The association of miR-181b-2-3p with the subfertility phenotype suggests that this miRNA may serve as a putative early indicator of LF status.
妊娠率和活产率是常用于定义人类和动物生育能力的指标。异常微小RNA(miRNA)表达对生育相关基因的影响代表了在理解与生殖功能障碍相关的转录后调控机制方面的重大知识空白。因此,识别亚生育力标志物对于生育干预策略的成功至关重要,尤其是在农业领域,可持续农业实践与整体经济表现相关。在这里,我们探讨了血浆小细胞外囊泡(sEV)衍生的miRNA与荷斯坦-弗里生奶牛亚生育力的表达模式及关联。小RNA测序在已知繁殖结果的低生育力(LF)和高生育力(HF)初产奶牛(每组n = 10)之间鉴定出14种差异表达的血浆sEV衍生的miRNA(FDR < 0.05且-logFC > 2)。从不同样本群体的年轻小母牛(10月龄)(LF和HF;每组n = 8)中分离出的这些血浆sEV miRNA候选物的qRT-PCR miRNA测定验证证实,与HF sEV相比,LF sEV中miR-181b-2-3p的丰度显著更高[P值 = 0.0093,相对表达率 = 2.665(2;LF = 19.6095,HF = 7.35636)]。我们的结果表明,循环sEV miRNA可能部分有助于奶牛的生育性状。miR-181b-2-3p与亚生育力表型的关联表明,这种miRNA可能作为LF状态的推定早期指标。