Laboratory of EM, Institute of Parasitology, Biology Centre of CAS, České Budějovice, Czech Republic.
Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.
Sci Rep. 2019 May 2;9(1):6860. doi: 10.1038/s41598-019-43284-6.
The salivary gland of hard ticks is a highly innervated tissue where multiple intertwined axonal projections enter each individual acini. In the present study, we investigated the ultrastructural architecture of axonal projections within granular salivary gland type II and III acini of Ixodes ricinus female. Using immunogold labeling, we specifically examined the associations of SIFamide neuropeptide, SIFamide receptor (SIFa_R), neuropeptide pigment dispersing factor (PDF), and the invertebrate-specific D1-like dopamine receptor (InvD1L), with acinar cells. In both acini types, SIFamide-positive axons were found to be in direct contact with either basal epithelial cells or a single adlumenal myoepithelial cell in close proximity to the either the acinar duct or its valve, respectively. Accordingly, SIFa_R staining correlated with SIFamide-positive axons in both basal epithelial and myoepithelial cells. Immunoreactivity for both InvD1L and PDF (type II acini exclusively) revealed positive axons radiating along the acinar lumen. These axons were primarily enclosed by the adlumenal myoepithelial cell plasma membrane and interstitial projections of ablumenal epithelial cells. Our study has revealed the detailed ultrastructure of I. ricinus salivary glands, and provides a solid baseline for a comprehensive understanding of the cell-axon interactions and their functions in this essential tick organ.
硬蜱的唾液腺是一个高度神经支配的组织,其中多个交织的轴突投射进入每个单独的腺泡。在本研究中,我们研究了雌性蓖子硬蜱颗粒状唾液腺 II 型和 III 型腺泡内轴突投射的超微结构。通过免疫金标记,我们特别检查了 SIFamide 神经肽、SIFamide 受体(SIFa_R)、神经肽色素分散因子(PDF)和无脊椎动物特异性 D1 样多巴胺受体(InvD1L)与腺泡细胞的关联。在这两种腺泡类型中,SIFamide 阳性轴突被发现与基底上皮细胞或单个靠近腺泡导管或其瓣膜的腔上皮下的肌上皮细胞直接接触。因此,SIFa_R 染色与基底上皮和肌上皮细胞中的 SIFamide 阳性轴突相关。InvD1L 和 PDF(仅在 II 型腺泡中)的免疫反应性显示沿腺泡腔辐射的阳性轴突。这些轴突主要被腔上皮下的肌上皮细胞的质膜和上皮细胞的间质突起所包围。我们的研究揭示了蓖子硬蜱唾液腺的详细超微结构,并为全面了解这个重要蜱虫器官中的细胞-轴突相互作用及其功能提供了坚实的基础。