piRNA expression patterns in high vs. low fertility bovine sperm.

IF 2.1 4区 医学 Q3 ANDROLOGY Systems Biology in Reproductive Medicine Pub Date : 2024-12-01 Epub Date: 2024-06-26 DOI:10.1080/19396368.2024.2364742
Nicholas Werry, Stewart J Russell, Raamkumaar Sivakumar, Sarah Miller, Katie Hickey, Steven Larmer, Michael Lohuis, Clifford Librach, Jonathan LaMarre
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Abstract

PIWI-interacting RNAs (piRNAs) are 24-32 nucleotide RNA sequences primarily expressed in germ cells and developing embryos that suppress transposable element expression to protect genomic integrity during epigenetic reprogramming events. We characterized the expression of piRNA sequences and their encoding clusters in sperm samples from an idiopathic fertility model of Holstein bulls with high and low Sire Conception Rates. The piRNA populations were determined to be mostly similar between fertility conditions when investigated by principal component and differential expression analysis, suggesting that a high degree of conservation in the piRNA system is likely necessary for the production of viable sperm. Both fertility conditions demonstrated evidence of 'ping-pong' activity - a secondary biogenesis pathway associated with active transposable element targeting and suppression. Most sperm-borne piRNAs were between 29-30 nucleotides in length and originated from 226 clusters across the genome, with the exception of chromosome 20. Mapping analysis revealed abundant targeting of several transposable element families, suggesting a suppressive function of sperm piRNAs consistent with their established roles. Expression of genes targeted by sperm-borne piRNAs is significantly reduced throughout early embryogenesis compared to the mRNA population. Limited transposable element expression is known to be essential for spermatogenesis, thus epigenetic regulation of this pathway is likely to influence sperm quality and fertilizing capacity.

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高繁殖力与低繁殖力牛精子中 piRNA 的表达模式。
PIWI-interacting RNA(piRNA)是一种 24-32 个核苷酸的 RNA 序列,主要在生殖细胞和发育中的胚胎中表达,在表观遗传重编程过程中抑制转座元件的表达以保护基因组的完整性。我们对高受胎率和低受胎率荷斯坦公牛特发性生育力模型精子样本中 piRNA 序列及其编码集群的表达进行了表征。通过主成分和差异表达分析研究发现,不同繁殖力条件下的 piRNA 群体基本相似,这表明 piRNA 系统的高度保守性可能是产生有活力精子的必要条件。两种生育条件都显示了 "乒乓 "活动的证据--这是一种与活性转座元件靶向和抑制相关的次级生物发生途径。大多数精子携带的 piRNA 长度在 29-30 个核苷酸之间,来自整个基因组的 226 个集群,但 20 号染色体除外。图谱分析表明,精子piRNAs大量靶向几个转座元件家族,这表明精子piRNAs的抑制功能与它们的既定作用一致。与 mRNA 群体相比,精子 piRNA 靶向基因的表达在整个早期胚胎发生过程中明显减少。已知有限的转座元件表达对精子发生至关重要,因此这一途径的表观遗传调控可能会影响精子质量和受精能力。
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来源期刊
CiteScore
4.30
自引率
4.20%
发文量
27
审稿时长
>12 weeks
期刊介绍: Systems Biology in Reproductive Medicine, SBiRM, publishes Research Articles, Communications, Applications Notes that include protocols a Clinical Corner that includes case reports, Review Articles and Hypotheses and Letters to the Editor on human and animal reproduction. The journal will highlight the use of systems approaches including genomic, cellular, proteomic, metabolomic, bioinformatic, molecular, and biochemical, to address fundamental questions in reproductive biology, reproductive medicine, and translational research. The journal publishes research involving human and animal gametes, stem cells, developmental biology and toxicology, and clinical care in reproductive medicine. Specific areas of interest to the journal include: male factor infertility and germ cell biology, reproductive technologies (gamete micro-manipulation and cryopreservation, in vitro fertilization/embryo transfer (IVF/ET) and contraception. Research that is directed towards developing new or enhanced technologies for clinical medicine or scientific research in reproduction is of significant interest to the journal.
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