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Control of the pars intermedia of the lizard,Anolis carolinensis
Authors:Dr. Leonard Larsson  Esteban M. Rodríguez  Patrick Meurling
Affiliation:(1) Department of Zoology, University of Lund, Helgonavägen 3, S-223 62 Lund, Sweden;(2) Present address: Instituto de Histologia y Patologia, Universidad Austral, Valdivia, Chile
Abstract:Summary The ultrastructure of the intermediate lobe of the hypophysis was studied in Anolis carolinensis with the use of a threefold aldehyde fixative. Lizards with a brown skin were selected. The possibility of two types of secretory cells is discussed; neither cell type is innervated. Type I cells are rarely found and contain dense granules approximately 0.3 mgrm in diameter; Type II cells vary widely in secretory activity. Most of the Type II cells contain a large number of dense secretory granules (up to about 1.3 mgrm in diameter) almost filling the cytoplasm. Rough endoplasmic reticulum (RER), Golgi apparatus and mitochondria are poorly developed. Only some of these cells show signs suggesting a high secretory activity, namely a well developed RER, Golgi apparatus and numerous mitochondria. In these cells the RER sometimes forms large intracisternal droplets (up to 7 mgrm in diameter). Two of the animals exhibited a more uniform, high secretory activity. Large (about 2 mgrm in diameter), pale vacuoles, probably of extracellular character, were found mostly in the vicinity of the perivascular septum. Their role in the release of MSH is discussed. The present data, which are discussed with reference to earlier findings (Forbes, 1972), form the morphological basis for an experimental study on regulation of MSH release (Larsson et al., 1979).Supported by grants from the Swedish Natural Science Research Council (to P. Meurling) and the Royal Physiographic Society of LundThe authors are indebted to Mrs. Ingrid Hallberg, Mrs. Kirsten Thörneby and Mrs. Lena Sandell for valuable technical assistance and to Miss Inger Norling for photographic aid
Keywords:Intermediate lobe  Hypophysis  Ultrastructure  Colour change  Control mechanisms  Anolis carolinensis
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