Yunnan Animal Science and Veterinary Institute, Jindian, Panlong District, Kunming 650224, China.
Yunnan Provincial Engineering Research Center of Livestock Genetic Resource Conservation and Germplasm Enhancement, Jindian, Panlong District, Kunming 650224, China.
Int J Mol Sci. 2024 Aug 22;25(16):9112. doi: 10.3390/ijms25169112.
Semen cryopreservation results in the differential remodeling of the molecules presented in sperm, and these alterations related to reductions in sperm quality and its physiological function have not been fully understood. Given this, this study aimed to investigate the cryoinjury mechanism of goat sperm by analyzing changes of the metabolic characteristics in sperm during the cryopreservation process. The ultra-high-performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UHPLC-QTOF-MS) technique was performed to explore metabolite profiles of fresh sperm (C group), equilibrated sperm (E group), and frozen-thawed sperm (F group). In total, 2570 metabolites in positive mode and 2306 metabolites in negative mode were identified, respectively. After comparative analyses among these three groups, 374 differentially abundant metabolites (DAMs) in C vs. E, 291 DAMs in C vs. F, and 189 DAMs in E vs. F were obtained in the positive mode; concurrently, 530 DAMs in C vs. E, 405 DAMs in C vs. F, and 193 DAMs in E vs. F were obtained in the negative mode, respectively. The DAMs were significantly enriched in various metabolic pathways, including 31 pathways in C vs. E, 25 pathways in C vs. F, and 28 pathways in E vs. F, respectively. Among them, 65 DAMs and 25 significantly enriched pathways across the three comparisons were discovered, which may be tightly associated with sperm characteristics and function. Particularly, the functional terms such as TCA cycle, biosynthesis of unsaturated fatty acids, sphingolipid metabolism, glycine, serine and threonine metabolism, alpha-linolenic acid metabolism, and pyruvate metabolism, as well as associated pivotal metabolites like ceramide, betaine, choline, fumaric acid, L-malic acid and L-lactic acid, were focused on. In conclusion, our research characterizes the composition of metabolites in goat sperm and their alterations induced by the cryopreservation process, offering a critical foundation for further exploring the molecular mechanisms of metabolism influencing the quality and freezing tolerance of goat sperm. Additionally, the impacts of equilibration at low temperature on sperm quality may need more attentions as compared to the freezing and thawing process.
精子冷冻保存导致精子中呈现的分子发生差异重塑,而这些与精子质量和生理功能下降相关的改变尚未被完全理解。鉴于此,本研究旨在通过分析冷冻保存过程中精子代谢特征的变化来研究山羊精子的冷冻损伤机制。采用超高效液相色谱-四极杆飞行时间质谱(UHPLC-QTOF-MS)技术分析新鲜精子(C 组)、平衡精子(E 组)和冷冻-解冻精子(F 组)的代谢特征。分别鉴定出正模式下 2570 种代谢物和负模式下 2306 种代谢物。对这三组进行比较分析后,在正模式下,C 组与 E 组之间有 374 种差异丰度代谢物(DAMs),C 组与 F 组之间有 291 种 DAMs,E 组与 F 组之间有 189 种 DAMs;同时,在负模式下,C 组与 E 组之间有 530 种 DAMs,C 组与 F 组之间有 405 种 DAMs,E 组与 F 组之间有 193 种 DAMs。这些 DAMs 显著富集于各种代谢途径,包括 C 组与 E 组之间的 31 个途径、C 组与 F 组之间的 25 个途径和 E 组与 F 组之间的 28 个途径。其中,在这三组比较中发现有 65 种 DAMs 和 25 个显著富集途径,这些 DAMs 和途径可能与精子的特征和功能密切相关。特别关注的是三羧酸循环、不饱和脂肪酸的生物合成、鞘脂代谢、甘氨酸、丝氨酸和苏氨酸代谢、α-亚麻酸代谢和丙酮酸代谢等功能术语,以及相关的关键代谢物如神经酰胺、甜菜碱、胆碱、富马酸、L-苹果酸和 L-乳酸。总之,本研究描述了山羊精子中代谢物的组成及其在冷冻保存过程中发生的改变,为进一步探索影响山羊精子质量和冷冻耐受性的代谢分子机制提供了重要基础。此外,与冷冻和解冻过程相比,低温平衡对精子质量的影响可能需要更多关注。