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一项关于极端碱性和高渗适应硬骨鱼奥利亚罗非鱼(Oreochromis alcalicus grahami,Boulenger)鳃形态的研究,特别强调氯细胞的超微结构及其在水稀释时的变化。扫描电子显微镜和透射电子显微镜研究。

A study of the morphology of the gills of an extreme alkalinity and hyperosmotic adapted teleost Oreochromis alcalicus grahami (Boulenger) with particular emphasis on the ultrastructure of the chloride cells and their modifications with water dilution. A SEM and TEM study.

作者信息

Maina J N

机构信息

Department of Anatomy, School of Veterinary Medicine, University of California, Davis 95616.

出版信息

Anat Embryol (Berl). 1990;181(1):83-98. doi: 10.1007/BF00189731.

Abstract

The general gill morphology of Oreochromis alcalicus grahami, a teleost adapted to high salinity and hyperosmosis, is basically similar to that of other teleostean fish. The species has four pairs of gill arches, all of which have well developed filaments. Each of the arches (holobranchs) has two rows of filaments (hemibranchs). Bilaterally situated secondary lamellae branch from the central axis of the filaments. The lamellae reach their maximum size at the middle of the filament, gradually decrease in size and eventually disappear towards the tip of the filament, which is bare. The leading edge of the gill filament and the immediate interlamellar space is covered by a stratified epithelium consisting of pavement cells, mucous cells, chloride cells and undifferentiated cells. The surface of these cells is made up of concentric microridges. The chloride cells were found only on the primary epithelium (filamental epithelium) and very rarely on the secondary epithelium (lamellar epithelium). Two types of chloride cells were observed in the gills of Oreochromis. The superficial chloride cells have fewer mitochondria concentrated towards the basal aspect of the cell, and a network of tubules towards the apical surface and are less electron dense. These cells intercommunicate with the water through an apical pore. The deep chloride cells have numerous diffuse mitochondria intercalated between a fine profuse tubular network and are more electron dense. These cells are covered by one or more layers of pavement cells and thus do not have access to the external surface. After gradual dilution of the lake water in which the fish were kept, both types of chloride cells remained topographically and ultrastructurally distinct. However, in both kinds of cell the mitochondria decreased in number and size. Initially there was an increase in the diameter and the degree of interdigitation of the tubules followed by a gradual decrease. An increase in the quantity of rough endoplasmic reticulum, particularly at the perinuclear region of the cell, was noted. The morphometric analysis of the branchial system indicated that the gills of Oreochromis are well adapted for gas exchange by having numerous and relatively long gill filaments with a high lamellar density. These features provide a large surface for gas exchange which, when coupled with the notably thin water-blood barrier of an average thickness of only 0.83 micro, would facilitate efficient absorption of oxygen by the gills. Oreochromis alcalicus was observed to be incapable of adapting to freshwater. This may have been due to the progressive degeneration of the chloride cells.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

适应高盐度和高渗环境的硬骨鱼——格拉汉姆氏罗非鱼的鳃一般形态,与其他硬骨鱼类基本相似。该物种有四对鳃弓,所有鳃弓都有发育良好的鳃丝。每个鳃弓(全鳃)有两排鳃丝(半鳃)。双侧分布的次生薄片从鳃丝的中轴线分支出来。薄片在鳃丝中部达到最大尺寸,然后逐渐变小,最终在鳃丝尖端消失,此处是裸露的。鳃丝的前缘和紧邻的片层间隙被由扁平细胞、黏液细胞、氯细胞和未分化细胞组成的复层上皮覆盖。这些细胞的表面由同心微嵴构成。氯细胞仅在初级上皮(鳃丝上皮)中发现,在次级上皮(薄片上皮)中极少见到。在格拉汉姆氏罗非鱼的鳃中观察到两种类型的氯细胞。表层氯细胞的线粒体较少,集中在细胞基部,朝向顶端表面有一个管状网络,电子密度较低。这些细胞通过顶端孔与水相通。深层氯细胞有许多分散的线粒体,夹杂在精细丰富的管状网络之间,电子密度较高。这些细胞被一层或多层扁平细胞覆盖,因此无法接触到外部表面。在逐渐稀释饲养鱼类的湖水后,两种类型的氯细胞在拓扑结构和超微结构上仍保持明显差异。然而,两种细胞中的线粒体数量和大小都减少了。最初,管状结构的直径和相互交错程度增加,随后逐渐减小。注意到粗面内质网的数量增加,特别是在细胞的核周区域。鳃系统的形态计量分析表明,格拉汉姆氏罗非鱼的鳃通过拥有众多且相对较长的鳃丝以及高片层密度,非常适合气体交换。这些特征为气体交换提供了很大的表面积,再加上平均厚度仅为0.83微米的显著薄的水 - 血屏障,将有助于鳃高效吸收氧气。观察到格拉汉姆氏罗非鱼无法适应淡水。这可能是由于氯细胞的逐渐退化所致。(摘要截取自400字)

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