褪黑激素对公羊精子的不同影响取决于 MTR1A 基因的 RsaI 多态性等位基因变异、培养基和季节。

IF 2.1
Victoria Peña-Delgado, Agustí Noya, Melissa Carvajal-Serna, José A Abecia, Rosaura Pérez-Pe, Adriana Casao
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引用次数: 0

摘要

背景 褪黑激素受体 MTNR1A 基因的 Rsa I 多态性会影响绵羊的季节性繁殖,但其对公羊精子及其对褪黑激素的反应的影响尚不清楚。目的 本研究旨在评估 MTNR1A 基因的 Rsa I 多态性是否会影响公羊精子对体外添加的褪黑激素的反应。方法 在繁殖和非繁殖季节,将携带不同 Rsa I 等位基因变异的公羊精子与褪黑激素一起在 TALP 培养基或获能触发培养基中培养。培养后,对精子活力、膜完整性、线粒体活性、氧化损伤、凋亡标志物和获能状态进行了评估。主要结果 在繁殖季节,当精子在TALP培养基中孵育时,T/T基因型与褪黑激素的一些不良影响有关,而当在获能触发培养基中添加褪黑激素时,C/C基因型与不良影响有关。褪黑激素对精子的去势作用也因基因型而异。结论 褪黑激素对携带不同 Rsa I 基因型的公羊精子的影响因季节和培养基而异。意义 了解公羊 MTNR1A 基因的 Rsa I 等位基因变体有助于开展绵羊体外繁殖技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential effect of melatonin on ram spermatozoa depending on the allelic variant of the RsaI polymorphism of the MTR1A gene, incubation medium and season.

Context The Rsa I polymorphism of the melatonin receptor MTNR1A gene affects seasonal reproduction in sheep, but its effect on ram spermatozoa and their response to melatonin is unknown. Aims This study aims to evaluate whether Rsa I polymorphism of the MTNR1A gene influences the response of ram spermatozoa to in vitro added melatonin. Methods Spermatozoa from rams carrying different Rsa I allelic variants were incubated with melatonin in a TALP medium or a capacitation-triggering medium during the reproductive and non-reproductive seasons. After incubation, sperm motility, membrane integrity, mitochondria activity, oxidative damage, apoptotic markers and capacitation status were assessed. Key results In the reproductive season, the T/T genotype was related to some adverse effects of melatonin when spermatozoa were incubated in TALP medium, whereas the C/C genotype was linked with adverse effects when the hormone was added in a capacitation-triggering medium. The decapacitating effect of melatonin on spermatozoa was also different depending on genotype. Conclusions The melatonin effect on spermatozoa from rams carrying different Rsa I genotypes differed depending on the season and the medium. Implications The knowledge of the Rsa I allelic variant of the MTNR1A gene of rams could be helpful when carrying out in vitro reproductive techniques in the ovine species.

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