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Micromorphology and Ultrastructure of the Foot of the Equilateral Venus <i>Gomphina veneriformis</i>(Bivalvia: Veneridae) 被引量:1
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作者 jung jun park jung Sick Lee +1 位作者 Yeon Gyu Lee Jae Won Kim 《CellBio》 2012年第1期11-16,共6页
The shape and microscopic structure of the foot of the equilateral Venus, Gomphina veneriformis are described by light and electron microscopy along with the substrate conditions of their habitat. The habitat sediment... The shape and microscopic structure of the foot of the equilateral Venus, Gomphina veneriformis are described by light and electron microscopy along with the substrate conditions of their habitat. The habitat sediment of G. veneriformis is composed of sand (2 - 0.063 mm in diameter), mainly. The foot is wedge-shaped with multiple vertical furrows on the surface. Although the foot is composed of an epithelial layer, a connective tissue layer and a muscular layer, the boundary between the connective tissue and muscular layer is not clear. The epithelial layer was composed mostly of ciliated columnar epithelia and secretory cells. Epithelial cells forming the apical region of the fold were long columnar, while cells of the interfold were mostly short columnar. The cilia and microvilli were commonly observed on the free surface of epithelial cells, while tight junctions of apico-lateral aspect and membrane interdigitations were found between the epithelial cells. Secretory cells were found to contain acidic mucopolysaccharide, and were classified into two types in accordance with the shapes and ultrastructures of secretory granules. The muscle fibers were composed of thin and thick microfilaments, the proportions of which were 81.3% and 18.7%, respectively. It was determined that such morphology and structural characteristics of the foot of G. veneriformis would present advantageous conditions for borrowing into substrate and mobility. 展开更多
关键词 Gomphina veneriformis Microscopic Structure
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Digestive gland ultrastructure of the tunicate,Halocynthia roretzi(Ascidiacea:Pyuridae)in relation to function
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作者 Yun Kyung Shin jung jun park +2 位作者 Jeong-In Myeong Mi Ae Jeon jung Sick Lee 《Journal of Coastal Life Medicine》 2014年第12期947-952,共6页
Objective:To examine the glycogen storage and lipid digestion,as well as detoxification of the digestive gland of the tunicate,Halocynthia roretzi.Methods:Tunicates used in this study were collected from tunicate aqua... Objective:To examine the glycogen storage and lipid digestion,as well as detoxification of the digestive gland of the tunicate,Halocynthia roretzi.Methods:Tunicates used in this study were collected from tunicate aquafarm located in Hansan Bay on the southern coast of Korea.Light and electron microscopy was performed.Results:The digestive gland was divided into the tubular and blind ampulla portions.Fine vacuolar granules were present,and lipofuscin granules were confirmed in the cytoplasm of the epithelia of the blind ampulla portion.Epithelial cells of the blind ampulla portion could be classified into three types.Conclusions:The results indicate that these three types of cells are involved in glycogen storage,lipid digestion and detoxification. 展开更多
关键词 DETOXIFICATION Digestive gland epithelia GLYCOGEN Halocynthia roretzi Lipid
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