猪的精子功能、线粒体活性和体内繁殖力与线粒体 DNA 含量有关。

IF 6.3 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Marc Llavanera, Yentel Mateo-Otero, Estel Viñolas-Vergés, Sergi Bonet, Marc Yeste
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引用次数: 0

摘要

背景:尽管线粒体在精子中的含量较低,但在这种细胞类型中却具有多种功能,包括能量生产、信号传递和钙调节。据报道,人类精子线粒体 DNA 含量(mtDNAc)与精子功能和生育能力呈负相关。然而,家畜的 mtDNAc 与精子功能之间的关系仍未得到研究。因此,本研究旨在揭示猪的 mtDNAc 与精子功能和受精潜能之间的联系。研究人员优化了猪精子 mtDNAc 定量的 qPCR 方法,随后研究了该参数与精子活力、运动学、线粒体活性和受精能力之间的关系:结果:首先,研究发现 qPCR 方法对猪精子中 mtDNAc 的定量既灵敏又高效。通过使用该技术,观察到 mtDNAc 与精子活力、线粒体活性和体内(而非体外)生育能力相关。具体来说,mtDNAc 含量低的精子运动能力更强,但线粒体活性和细胞内活性氧却降低了。有趣的是,与mtDNAc含量高的样本相比,mtDNAc含量低的样本受孕率和产仔率更高,但体外受精率和胚胎发育情况相似:这些发现丰富了我们对 mtDNAc 与精子生物学相关性的理解,并为今后将该参数用作牲畜精子功能和生育能力的分子预测指标的研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sperm function, mitochondrial activity and in vivo fertility are associated to their mitochondrial DNA content in pigs.

Background: Despite their low abundance in sperm, mitochondria have diverse functions in this cell type, including energy production, signalling and calcium regulation. In humans, sperm mitochondrial DNA content (mtDNAc) has been reported to be negatively linked to sperm function and fertility. Yet, the association between mtDNAc and sperm function in livestock remains unexplored. For this reason, this study aimed to shed some light on the link between mtDNAc and sperm function and fertilising potential in pigs. A qPCR method for mtDNAc quantification was optimised for pig sperm, and the association of this parameter with sperm motility, kinematics, mitochondrial activity, and fertility was subsequently interrogated.

Results: First, the qPCR method was found to be sensitive and efficient for mtDNAc quantification in pig sperm. By using this technique, mtDNAc was observed to be associated to sperm motility, mitochondrial activity and in vivo, but not in vitro, fertility outcomes. Specifically, sperm with low mtDNAc were seen to exhibit greater motility but decreased mitochondrial activity and intracellular reactive oxygen species. Interestingly, samples with lower mtDNAc showed higher conception and farrowing rates, but similar in vitro fertilisation rates and embryo development, when compared to those with greater mtDNAc.

Conclusions: These findings enrich our comprehension of the association of mtDNAc with sperm biology, and lay the foundation for future research into employing this parameter as a molecular predictor for sperm function and fertility in livestock.

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来源期刊
CiteScore
10.30
自引率
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