Bubel A
Cell Tissue Res. 1976 Mar 5;167(1):65-95. doi: 10.1007/BF00220160.
The effects of different salinities and concentrations of copper, mercury and cadmium ions on the gills of Jaera nordmanni are investigated by means of light and electron microscopy. After exposure to 10% and 50% sea water the gill epithelium cells show a marked uniformity in appearance, possessing characteristically large, sub-cuticular spaces which are prominent between microvilli. With exposure to the heavy metal ions a similar sequence of histological and ultrastructural changes occur in all the gill epithelial cells, culminating in cell breakdown. The ultrastructural changes include distended microvilli, dilated endoplasmic reticulum, dissociated ribosomes, diffuse (swollen) cytoplasm, swollen mitochondria and a basal membrane withdrawn from the basal lamina. An increase in the number of haemocytes is also commonly observed in the haemolymph spaces during heavy metal ion exposure. The significance of the morphological changes undergone by the gill epithelial cells after exposure to different salinities and heavy metal ion concentration, are discussed in relation to the physiological functioning of the gill.
通过光学显微镜和电子显微镜研究了不同盐度以及铜、汞和镉离子浓度对诺氏耶尔虫鳃的影响。暴露于10%和50%海水后,鳃上皮细胞外观呈现出显著的一致性,具有特征性的大的表皮下间隙,这些间隙在微绒毛之间很突出。暴露于重金属离子后,所有鳃上皮细胞都会出现类似的组织学和超微结构变化序列,最终导致细胞破裂。超微结构变化包括微绒毛肿胀、内质网扩张、核糖体解离、细胞质弥散(肿胀)、线粒体肿胀以及基膜从基底膜退缩。在重金属离子暴露期间,通常还会在血淋巴间隙中观察到血细胞数量增加。结合鳃的生理功能,讨论了鳃上皮细胞在暴露于不同盐度和重金属离子浓度后所经历的形态变化的意义。