Bai Linfeng, Zhao Yue, Zhou Yang, Song Yongli, Xiao Hao, Zhao Gaoping, Wang Zhigang, Li Xihe
State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, School of Life Sciences, Inner Mongolia University, Hohhot, China.
Research Center for Animal Genetic Resources of Mongolia Plateau, Inner Mongolia University, Hohhot, China.
Front Vet Sci. 2025 Mar 12;12:1523491. doi: 10.3389/fvets.2025.1523491. eCollection 2025.
Sex determination is the developmental assignment that results from genetic factors. The sexual characters were the specific manifestations of male and female individuals under stimulation of sexual hormonal production. The fusion of an oocyte with an X chromosome-bearing sperm will lead to a female (XX), while fusion with a Y chromosome-bearing sperm will develop into a male (XY) in mammals. Sexing technology has been developed to fertilize eggs with sorted sperm, producing offspring of the desired sex. Sperm sorting enables the sex pre-determination of offspring via fertilization (IVF) or artificial insemination (AI) in domestic animals. Flow cytometric sorting of X and Y sperm is widely considered the most applied method for sperm sorting and has been commercially applied in cattle. However, a non-invasive, immunological method for screening X and Y sperm is considered to be a feasible approach. This review summarizes the current knowledge and techniques of sperm immunological sorting, including the preparation of antibodies, application of immunomodulators, and immunoisolation. Additionally, we focus on identifying sex-specifically expressed proteins in X and Y sperm through proteomic analysis, and verifying the sex-specific proteins using experimental techniques. Furthermore, several housekeeping proteins as loading control were discussed in immunoblotting of sperm proteins. Immunological sorting of X and Y sperm could provide a convenient, cost-effective, and highly efficient technique that can improve economic benefits and achieve an advanced level of sexing technology. This review provides insight into immunological sorting of sperm and the pre-determination of sex in farm animals.
性别决定是由遗传因素导致的发育过程。性征是男性和女性个体在性激素分泌刺激下的特定表现。在哺乳动物中,卵母细胞与携带X染色体的精子融合会产生雌性(XX),而与携带Y染色体的精子融合则会发育为雄性(XY)。性别鉴定技术已被开发出来,用于使卵子与经过筛选的精子受精,从而产生所需性别的后代。精子筛选能够在家畜中通过体外受精(IVF)或人工授精(AI)实现后代性别的预先确定。X和Y精子的流式细胞术筛选被广泛认为是最常用的精子筛选方法,并且已在牛的繁殖中得到商业应用。然而,一种用于筛选X和Y精子的非侵入性免疫方法被认为是一种可行的途径。本综述总结了精子免疫筛选的现有知识和技术,包括抗体的制备、免疫调节剂的应用以及免疫分离。此外,我们专注于通过蛋白质组学分析鉴定X和Y精子中性别特异性表达的蛋白质,并使用实验技术验证这些性别特异性蛋白质。此外,还讨论了在精子蛋白质免疫印迹中用作上样对照的几种管家蛋白。X和Y精子的免疫筛选可以提供一种方便、经济高效且高效的技术,能够提高经济效益并达到先进的性别鉴定技术水平。本综述为家畜精子的免疫筛选和性别预先确定提供了见解。