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Development of secretory activity in the seminal vesicle of the male migratory grasshopper,Melanoplus sanguinipes (fabr.) (Orthoptera : Acrididae)
Institution:1. Hongcheon Institute of Medicinal Herb, Hongcheon, Gangwon, 25142, Republic of Korea;2. Department of Agricultural Biology, National Institute of Agricultural Science, RDA, Wanju 55365, Republic of Korea;1. Geography and Environment, University of Southampton, Southampton SO17 1BJ, UK;2. Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK;3. Kulima Integrated Development Solutions (Pty) Ltd, Postnet Suite H79, Private Bag x9118, Pietermaritzburg 3200, South Africa;4. Centre for Water Law, Policy and Science, School of Law, University of Dundee, Dundee DD1 4HN, UK;5. Institute of Water and Flood Management at Bangladesh University of Engineering and Technology, Dhaka, Bangladesh;6. School of Oceanographic Studies, Jadavpur University, Kolkata, West Bengal, India;7. Institute for Environment and Sanitation Studies (IESS), University of Ghana, Accra, Ghana
Abstract:This paper describes the ultrastructure of the seminal vesicle and the isoelectric focusing patterns of its secretion during sexual maturation and after allatectomy in Melanoplus sanguinipes (Fabr.) (Orthoptera : Acrididae). In epithelia from seminal vesicles of newly fledged males, the rough endoplasmic reticulum is well developed, and Golgi complexes are elaborate, which indicates the gland is metabolically active. The cells also contain large glycogen deposits and the lumen microvilli are well differentiated. These ultrastructural features are more dominant in 24-hr-old adults where the cytoplasm is clearly differentiated into basal and apical regions. Basally, the cytoplasm is dominated by rough endoplasmic reticulum, large Golgi complexes, glycogen deposits and numerous mitochondria, while the apical cytoplasm is filled with large secretory and/or lysosomal vesicles. Between days 3 and 7, the ultrastructural features change little other than the rough endoplasmic reticulum cisternae, which become vesicular. Analysis by isoelectric focusing shows that the amount of secretory protein increases with age until day 3, at which time the gland contains its full complement of secretion. In seminal vesicles from allatectomized insects, ultrastructural features of cells and isoelectric focusing patterns of the secretion arc identical to those from normal males.
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