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底栖水黾雄性附腺细胞双核化的形态和发育特征(半翅目:水黾科)。

Morphological and Developmental Traits of the Binucleation of Male Accessory Gland Cells in the Benthic Water Bug, Aphelocheirus vittatus (Hemiptera: Aphelochiridae).

机构信息

Department of Life Science, Faculty of Science, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, Tokyo, Japan.

出版信息

J Insect Sci. 2020 Jul 1;20(4). doi: 10.1093/jisesa/ieaa082.

Abstract

The male accessory glands (MAGs) in insects are pair(s) of internal reproductive organs that produce and secrete the plasma component of seminal fluid. In various insects, MAG size is important for male reproductive success because the fluid provides physiologically active substances and/or nutrients to females to control sperm as well as female reproductive behaviors. Although the MAG epithelial cells in most insect species are standard mononucleate cells, those in some insect taxa are binucleate due to incomplete cytokinesis (e.g., Drosophila [Fallén] [Diptera: Drosophilidae]) or cell fusion (e.g., Cimex [Linnaeus] [Hemiptera: Cimicidae]). In the case of Drosophila, the apicobasal position of the two nuclei relative to the epithelial plane changes from vertical to horizontal after nutrient intake, which allows the volume of the MAG cavity to expand effectively. On the other hand, in the case of Cimex, the positions of the two nuclei do not change apicobasally in response to feeding, but their position relative to the proximodistal axis varies depending on the tubular/spherical organ morphology. Here, we report that the MAG of the benthic water bug Aphelocheirus vittatus (Matsumura) (Hemiptera: Aphelochiridae) shows binucleation in all epithelial cells. Despite the phylogenetically close relationship between Aphelocheirus and Cimex, the MAG cells in Aphelocheirus showed a Drosophila-like apicobasal change in the position of the two nuclei in response to feeding. Furthermore, the cytological processes during binucleation are more similar to those in Drosophila (incomplete cytokinesis) than to those in Cimex (cell fusion). These results indicate that the physiological role and mechanism of binucleation in MAG cells changed during the evolution of Hemiptera.

摘要

昆虫的雄性附属腺(MAG)是一对内部生殖器官,可产生和分泌精液的浆成分。在各种昆虫中,MAG 的大小对雄性生殖成功很重要,因为该液体可为雌性提供具有生理活性的物质和/或营养物质,以控制精子以及雌性的生殖行为。尽管大多数昆虫物种的 MAG 上皮细胞是标准的单核细胞,但由于有丝分裂不完全(例如果蝇[法伦] [双翅目:果蝇科])或细胞融合(例如臭虫[林奈] [半翅目:臭虫科]),某些昆虫类群的 MAG 上皮细胞是双核的。在果蝇的情况下,两个核相对于上皮平面的顶端-基底位置在摄入营养物质后从垂直变为水平,这使得 MAG 腔的体积能够有效地扩大。另一方面,在臭虫的情况下,两个核的顶端-基底位置不会响应进食而改变,但它们相对于近-远轴的位置根据管状/球形器官的形态而变化。在这里,我们报告说底栖水蝽 Aphelocheirus vittatus (松村)(半翅目:Aphelochiridae)的 MAG 在所有上皮细胞中都显示出双核化。尽管 Aphelocheirus 和 Cimex 在系统发育上密切相关,但 Aphelocheirus 的 MAG 细胞在进食时表现出类似于果蝇的顶端-基底核位置变化。此外,双核化过程中的细胞学过程与果蝇(有丝分裂不完全)比臭虫(细胞融合)更相似。这些结果表明,MAG 细胞双核化的生理作用和机制在半翅目昆虫的进化过程中发生了变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3da3/7433767/8183b49b8b10/ieaa082f0001.jpg

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