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摇蚊幼虫马氏管的精细结构与糖原储存及血红蛋白的命运的关系

Fine structure of the Malpighian tubules of chironomus larva in relation to glycogen storage and fate of hemoglobin.

作者信息

Jarial M S

机构信息

Muncie Center for Medical Education, Indiana University School of Medicine, Ball State University 47306.

出版信息

Tissue Cell. 1988;20(3):355-80. doi: 10.1016/0040-8166(88)90071-7.

Abstract

The larval Malpighian tubules of Chironomus tentans were studied using light and electron microscopy. The tubules are composed of two cell types: primary and stellate cells. Both cell types lack muscles, tracheoles, and laminate crystals in the cytoplasm and mitochondria in the microvilli. The primary cells exhibit long, wide basal membrane infoldings associated with mitochondria. They have a number of canaliculi and long, closely packed microvilli. The stellate cells possess shorter interconnecting basal infoldings and shorter, well-spaced microvilli. Both cell types are linked by septate and gap junctions. They have cytoplasmic processes and pedicels which enclose narrow slits between them and that are apposed to a basal lamella. In the 'fed' larva, the cells are stuffed with glycogen which is depleted in the 'starved' larva. Both cell types are involved in the vesicular transport of biliverdin. The presence of coated vesicles, tubular elements and various forms of lysosomes in the primary cells suggests they transport and break down functional hemoglobin. Structural modification of basal infoldings, canaliculi and microvilli is strongly correlated with increased secretory activity of the Malpighian tubules in 'fed' versus 'starved' larva.

摘要

利用光学显微镜和电子显微镜对摇蚊的幼虫马氏管进行了研究。这些小管由两种细胞类型组成:主细胞和星状细胞。两种细胞类型在细胞质中均缺乏肌肉、气管分支和层状晶体,微绒毛中也缺乏线粒体。主细胞呈现出与线粒体相关的长而宽的基底膜内褶。它们有许多小管和长而紧密排列的微绒毛。星状细胞具有较短的相互连接的基底内褶和较短且间隔良好的微绒毛。两种细胞类型通过紧密连接和缝隙连接相连。它们有细胞质突起和小柄,这些突起和小柄在它们之间包围着狭窄的缝隙,并且与基膜相邻。在“进食”的幼虫中,细胞充满糖原,而在“饥饿”的幼虫中糖原减少。两种细胞类型都参与了胆绿素的囊泡运输。主细胞中存在被膜小泡、管状元件和各种形式的溶酶体,这表明它们运输并分解功能性血红蛋白。基底内褶、小管和微绒毛的结构改变与“进食”幼虫与“饥饿”幼虫相比马氏管分泌活性的增加密切相关。

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