Vibration Emissions Reduce Boar Sperm Quality via Disrupting Its Metabolism

Biology Pub Date : 2024-05-23 DOI:10.3390/biology13060370
Shanpeng Wang, Xuejun Zeng, Shenao Liu, S. A. Masudul Hoque, Lingjiang Min, Nengshui Ding, Zhendong Zhu
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Abstract

Artificial insemination (AI) with liquid-preserved semen has recently become common in pig breeding. The semen doses are produced in a centralized manner at the boar stud and then subsequently distributed and transported to sow farms. However, vibration emissions during transportation by logistic vehicles may adversely affect the quality of boar sperm. Therefore, this study aimed to explore the impact of vibration-induced emissions on sperm quality and function under simulated transportation conditions. Each time, ejaculates from all 15 boars were collected and then pooled together to minimize individual variations, and the sample was split using an extender for dilution. Different rotational speeds (0 rpm, 80 rpm, 140 rpm, 200 rpm) were utilized to simulate varying intensities of vibration exposure using an orbital shaker, considering different transportation times (0 h, 3 h, and 6 h). Subsequently, evaluations were conducted regarding sperm motility, plasma membrane integrity, acrosome integrity, mitochondrial function, adenosine triphosphate (ATP) levels, mitochondrial reactive oxygen species (ROS) levels, pH, glycolytic pathway enzyme activities, and capacitation following exposure to vibration emissions. Both vibration time and intensity impact sperm motility, plasma membrane integrity, and acrosomal integrity. Vibration exposure significantly reduced sperm ATP levels, mitochondrial membrane potential, and the levels of mitochondria-encoded proteins (MT-ND1, MT-ND6) (p < 0.05). After vibration emission treatment, the pH value and mitochondrial ROS levels significantly increased (p < 0.05). Inhibition of sperm glycolysis was observed, with reduced activities of hexokinase (HK), pyruvate kinase (PK), and lactate dehydrogenase (LDH), along with decreased lactate levels (p < 0.05). Additionally, sperm tyrosine phosphorylation levels were significantly reduced by vibration emissions compared to the control group (p < 0.05). After the vibration emission treatment, the number of sperm bound to each square millimeter of oviduct explants decreased significantly compared to the control group (p < 0.05). Similarly, compared to the control group, using semen subjected to vibration stress for AI results in significantly reduced pregnancy rates, total born litter size, live-born litter size, and healthy born litter size (p < 0.05).
振动排放通过破坏新陈代谢降低公猪精子质量
最近,使用液体保存精液进行人工授精(AI)已成为养猪业的普遍做法。精液剂量在公猪种公猪场集中生产,然后再分配和运输到母猪养殖场。然而,物流车辆在运输过程中产生的振动可能会对公猪精子的质量产生不利影响。因此,本研究旨在探索在模拟运输条件下,振动引起的排放物对精子质量和功能的影响。每次收集全部 15 头公猪的精子,然后集中在一起,以尽量减少个体差异,并使用扩展器对样本进行分割稀释。考虑到不同的运输时间(0 小时、3 小时和 6 小时),使用不同的转速(0 转/分钟、80 转/分钟、140 转/分钟和 200 转/分钟)来模拟轨道振动器的不同振动强度。随后,对精子活力、质膜完整性、顶体完整性、线粒体功能、三磷酸腺苷(ATP)水平、线粒体活性氧(ROS)水平、pH 值、糖酵解途径酶活性以及暴露于振动排放后的获能情况进行了评估。振动时间和强度都会影响精子活力、质膜完整性和顶体完整性。振动暴露明显降低了精子的 ATP 水平、线粒体膜电位和线粒体编码蛋白(MT-ND1、MT-ND6)水平(p < 0.05)。经振动发射处理后,pH 值和线粒体 ROS 水平显著升高(p < 0.05)。精子糖酵解受到抑制,己糖激酶(HK)、丙酮酸激酶(PK)和乳酸脱氢酶(LDH)的活性降低,乳酸水平下降(p < 0.05)。此外,与对照组相比,精子的酪氨酸磷酸化水平也因振动发射而显著降低(p < 0.05)。经振动发射处理后,与对照组相比,每平方毫米输卵管外植体上结合的精子数量明显减少(p < 0.05)。同样,与对照组相比,使用受到振动应激的精液进行人工授精会导致妊娠率、总产仔数、活产仔数和健康产仔数显著降低(p < 0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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