Barbato G F, Cramer P G, Hammerstedt R H
Department of Poultry Science, Pennsylvania State University, University Park 16802, USA.
Biol Reprod. 1998 Mar;58(3):686-99. doi: 10.1095/biolreprod58.3.686.
A series of in vitro assays of sperm-egg binding were developed to identify potentially subfertile roosters. Initial assays used either segments of intact hen's egg perivitelline membrane (PVM) placed on a microscope slide or a heat-solubilized extract of PVM (HS-PVM) dried within a flat-bottomed microwell plate, with bound sperm detected with a DNA-specific stain and epifluorescence microscopy. An automated assay was developed using prestained sulfosuccinimidyl-7-amino-4-methylcoumarin-3-acetate-HS-PVM and enumeration of bound sperm with a fluorometric microwell plate reader. Four populations of chickens differing in fertility were evaluated with the following results: 1) the correlation across lines between in vitro sperm binding and fertility was 0.83 (N = 40; p < 0.0001); 2) correlations with other seminal parameters were low; and 3) the relationship between sperm binding and fertility was not linear, but a threshold plot allowed identification of males with low binding and low fertility. Motile sperm from roosters, turkeys, bulls, humans, mice, rams, and stallions bound in a dose responsive manner. Features of binding were revealed by both scanning and transmission electron microscopy. Use of this assay to cull males whose semen appears normal by traditional modes of analysis but differs in the obligatory trait of sperm-egg binding could be of value to avoid expensive progeny testing.
开发了一系列精子-卵子结合的体外试验,以鉴定潜在的亚生育能力公鸡。最初的试验使用放置在显微镜载玻片上的完整母鸡卵黄膜(PVM)片段,或在平底微孔板中干燥的PVM热溶解提取物(HS-PVM),用DNA特异性染色剂和落射荧光显微镜检测结合的精子。使用预染色的磺基琥珀酰亚胺基-7-氨基-4-甲基香豆素-3-乙酸-HS-PVM开发了一种自动试验,并使用荧光微孔板读数器对结合的精子进行计数。对四个生育能力不同的鸡群进行了评估,结果如下:1)体外精子结合与生育能力之间的品系间相关性为0.83(N = 40;p < 0.0001);2)与其他精液参数的相关性较低;3)精子结合与生育能力之间的关系不是线性的,但通过阈值图可以识别出结合能力低和生育能力低的雄性。来自公鸡、火鸡公牛、人类、小鼠、公羊和种马的活动精子以剂量反应方式结合。扫描电子显微镜和透射电子显微镜都揭示了结合的特征。使用这种试验淘汰那些精液通过传统分析模式看起来正常但在精子-卵子结合的必需特征方面不同的雄性,可能有助于避免昂贵的后代测试。