Ultrastructure of the salivary glands of Rhodnius domesticus Neiva & Pinto, 1923 (Hemiptera: Reduviidae). 2003

R M S Meirelles, and I S Rodrigues, and M Steindel, and M J Soares
Laboratory of Cellular Biology of Micro-organisms, Department of Cellular Ultrastructure and Biology, Oswaldo Cruz Institute-FIOCRUZ, Rio de Janeiro, RJ, Brazil.

The fine structure of the salivary glands of the triatomine bug Rhodnius domesticus was investigated. Stereomicroscopy and scanning electron microscopy showed that each salivary gland pair contains two close and independent units: the larger is reddish and elongated (principal gland), while the smaller is round and translucent (accessory gland). The accessory gland opens at the base of the main excretion duct, which arises at the medial portion of the principal gland. An accessory duct emerges at the base of the main excretion duct, above the accessory gland opening, and runs towards the digestive tract. Transmission electron microscopy showed that both gland units are formed by a single layer of epithelial gland cells, surrounded by a thick basal lamina containing tracheolae and muscle cell fibers. Adjacent gland cells are interconnected by interdigitations of their lateral plasma membranes and by septate junctions. Microvilli are present at the apical domain of the gland cell plasma membrane, which allow faster diffusion of the saliva towards the gland lumen. Several mitochondria, abundant endoplasmic reticulum profiles and usually one elongated nucleus are observed in the gland cells. According to standard nomenclatures, the salivary gland cells can be classified as type I cells, secreting the saliva into a large gland lumen.

UI MeSH Term Description Entries
D008297 Male Males
D008855 Microscopy, Electron, Scanning Microscopy in which the object is examined directly by an electron beam scanning the specimen point-by-point. The image is constructed by detecting the products of specimen interactions that are projected above the plane of the sample, such as backscattered electrons. Although SCANNING TRANSMISSION ELECTRON MICROSCOPY also scans the specimen point by point with the electron beam, the image is constructed by detecting the electrons, or their interaction products that are transmitted through the sample plane, so that is a form of TRANSMISSION ELECTRON MICROSCOPY. Scanning Electron Microscopy,Electron Scanning Microscopy,Electron Microscopies, Scanning,Electron Microscopy, Scanning,Electron Scanning Microscopies,Microscopies, Electron Scanning,Microscopies, Scanning Electron,Microscopy, Electron Scanning,Microscopy, Scanning Electron,Scanning Electron Microscopies,Scanning Microscopies, Electron,Scanning Microscopy, Electron
D005260 Female Females
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012239 Rhodnius A genus of the subfamily TRIATOMINAE. Rhodnius prolixus is a vector for TRYPANOSOMA CRUZI.
D012469 Salivary Glands Glands that secrete SALIVA in the MOUTH. There are three pairs of salivary glands (PAROTID GLAND; SUBLINGUAL GLAND; SUBMANDIBULAR GLAND). Gland, Salivary,Glands, Salivary,Salivary Gland
D018987 Salivary Ducts Any of the ducts which transport saliva. Salivary ducts include the parotid duct, the major and minor sublingual ducts, and the submandibular duct. Stensen's Duct,Wharton's Duct,Duct, Salivary,Duct, Stensen's,Duct, Wharton's,Ducts, Salivary,Salivary Duct,Stensen Duct,Stensens Duct,Wharton Duct,Whartons Duct

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