Lv Chunrong, Wu Guoquan, Hong Qionghua, Quan Guobo
1 Yunnan Animal Science and Veterinary Institute, Kunming, China.
2 Yunnan Provincial Engineering Laboratory of Animal Genetic Resource Conservation and Germplasm Enhancement, Kunming, China.
Biopreserv Biobank. 2019 Apr;17(2):171-182. doi: 10.1089/bio.2018.0113. Epub 2018 Nov 30.
The cryotolerance of farm animal spermatozoa varies according to their specific features, such as size, shape, and lipid composition. Thus, it is impossible to develop a standardized freezing procedure for different kinds of livestock species. The establishment of an efficient semen cryopreservation procedure will facilitate long-term conservation of small ruminant genetic resources and extension of artificial insemination in daily production. Different from sheep, goat seminal plasma contains a phospholipase, which can affect spermatozoa viability through interaction with milk or egg yolk. Currently, soybean lecithin is a viable alternative that replaces the components of animal origin in freezing extenders for goat semen. In addition, vitrification or freeze-drying may act as another alternative to replace traditional cryopreservation. However, these two methods, especially freeze-drying, may require the aid of the intracytoplasmic spermatozoa injection technology. Furthermore, the cryoinjury mechanism of mammalian spermatozoa has remained unclear until now. The emergence of proteomics and transcriptomics may provide some inspiration concerning this problem. In this review, we summarize the state of art relating to small ruminant semen cryopreservation, mainly focusing on the current status of the freezing procedures. In the meantime, some highlights such as protectants, vitrification, and freeze-drying are also reviewed. Finally, the future perspectives in the field of small ruminant spermatozoa preservation are discussed.
家畜精子的耐冻性因其特定特征(如大小、形状和脂质组成)而异。因此,不可能为不同种类的家畜制定标准化的冷冻程序。建立高效的精液冷冻保存程序将有助于长期保存小型反刍动物的遗传资源,并在日常生产中推广人工授精。与绵羊不同,山羊精浆中含有一种磷脂酶,它可通过与牛奶或蛋黄相互作用来影响精子活力。目前,大豆卵磷脂是一种可行的替代品,可在山羊精液冷冻稀释液中替代动物源性成分。此外,玻璃化或冻干可能作为另一种替代方法来取代传统的冷冻保存。然而,这两种方法,尤其是冻干,可能需要借助胞质内精子注射技术。此外,直到现在哺乳动物精子的冷冻损伤机制仍不清楚。蛋白质组学和转录组学的出现可能为解决这个问题提供一些启示。在这篇综述中,我们总结了小型反刍动物精液冷冻保存的现状,主要关注冷冻程序的当前状况。同时,还综述了一些亮点,如保护剂、玻璃化和冻干。最后,讨论了小型反刍动物精子保存领域的未来前景。