Mangels R, Young B, Keeble S, Ardekani R, Meslin C, Ferreira Z, Clark N L, Good J M, Dean M D
Molecular and Computational Biology, University of Southern California, Los Angeles, CA, USA.
Division of Biological Sciences, University of Montana, Missoula, MT, USA.
Heredity (Edinb). 2015 Dec;115(6):496-502. doi: 10.1038/hdy.2015.50. Epub 2015 Jun 24.
Across a diversity of animals, male seminal fluid coagulates upon ejaculation to form a hardened structure known as a copulatory plug. Previous studies suggest that copulatory plugs evolved as a mechanism for males to impede remating by females, but detailed investigations into the time course over which plugs survive in the female's reproductive tract are lacking. Here, we cross males from eight inbred strains to females from two inbred strains of house mice (Mus musculus domesticus). Plug survival was significantly affected by male genotype. Against intuition, plug survival time was negatively correlated with plug size: long-lasting plugs were small and relatively more susceptible to proteolysis. Plug size was associated with divergence in major protein composition of seminal vesicle fluid, suggesting that changes in gene expression may play an important role in plug dynamics. In contrast, we found no correlation to genetic variation in the protein-coding regions of five genes thought to be important in copulatory plug formation (Tgm4, Svs1, Svs2, Svs4 and Svs5). Our study demonstrates a complex relationship between copulatory plug characteristics and survival. We discuss several models to explain unexpected variation in plug phenotypes.
在多种动物中,雄性精液在射精时会凝固形成一种称为交配栓的硬化结构。先前的研究表明,交配栓的进化是雄性阻止雌性再次交配的一种机制,但目前缺乏对交配栓在雌性生殖道中存活时间过程的详细研究。在此,我们将八个近交系的雄性小鼠与两个近交系的雌性家鼠(小家鼠)进行杂交。交配栓的存活受到雄性基因型的显著影响。与直觉相反,交配栓的存活时间与栓的大小呈负相关:持久的交配栓较小且相对更容易受到蛋白水解作用的影响。交配栓的大小与精囊液主要蛋白质组成的差异有关,这表明基因表达的变化可能在交配栓动态变化中起重要作用。相比之下,我们发现与五个被认为在交配栓形成中起重要作用的基因(Tgm4、Svs1、Svs2、Svs4和Svs5)的蛋白质编码区域的遗传变异没有相关性。我们的研究表明交配栓特征与存活之间存在复杂关系。我们讨论了几种模型来解释交配栓表型的意外变异。