Department of Life Science, Faculty of Science, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, 171-8588, Tokyo, Japan.
Urban Entomology Laboratory, Vector Control Research Unit, School of Biological Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia.
Sci Rep. 2019 Apr 24;9(1):6500. doi: 10.1038/s41598-019-42844-0.
The insect male accessory gland (MAG) is an internal reproductive organ responsible for the synthesis and secretion of seminal fluid components, which play a pivotal role in the male reproductive strategy. In many species of insects, the effective ejaculation of the MAG products is essential for male reproduction. For this purpose, the fruit fly Drosophila has evolved binucleation in the MAG cells, which causes high plasticity of the glandular epithelium, leading to an increase in the volume of seminal fluid that is ejaculated. However, such a binucleation strategy has only been sporadically observed in Dipteran insects, including fruit flies. Here, we report the discovery of binucleation in the MAG of the common bed bug, Cimex lectularius, which belongs to hemimetabolous Hemiptera phylogenetically distant from holometabolous Diptera. In Cimex, the cell morphology and timing of synchrony during binucleation are quite different from those of Drosophila. Additionally, in Drosophila, the position of the two nuclei in the adult stage changes as a result of the mating history or the nutrient conditions; however, it remains stable in Cimex. These differences suggest that binucleation in the Cimex MAG plays a unique role in the male reproductive system that is distinct from that of Drosophila.
昆虫雄性附腺(MAG)是一个内部生殖器官,负责合成和分泌精液成分,这些成分在雄性生殖策略中起着关键作用。在许多昆虫物种中,MAG 产物的有效射出对于雄性生殖至关重要。为此,果蝇 Drosophila 已经在 MAG 细胞中进化出双核化,这导致腺体上皮的高度可塑性,从而增加射出的精液量。然而,这种双核化策略仅在包括果蝇在内的双翅目昆虫中零星观察到。在这里,我们报告了在常见的臭虫 Cimex lectularius 的 MAG 中发现双核化,臭虫在系统发育上与完全变态的双翅目昆虫相距甚远,属于半变态的半翅目。在 Cimex 中,双核化过程中的细胞形态和同步发生的时间与果蝇非常不同。此外,在果蝇中,两个核在成虫阶段的位置会因交配史或营养条件而发生变化;然而,在 Cimex 中它保持稳定。这些差异表明,Cimex MAG 中的双核化在雄性生殖系统中发挥着独特的作用,与果蝇不同。