Wunderer H, Picaud S, Franceschini N
CNRS, Equipe de Neurocybernetique, Laboratoire de Neurobiologie, Marseille, France.
Cell Tissue Res. 1989 Sep;257(3):565-76. doi: 10.1007/BF00221467.
Single photoreceptor cells in the compound eye of the housefly Musca domestica were selectively illuminated and subsequently compared electron-microscopically with the unilluminated photoreceptors in the immediate surroundings. The rhabdomeres of the illuminated cells remain largely unaffected, but the cells show an increase in the number of coated pits, various types of vesicles, and degradative organelles; some of the latter organelles are described for the first time in fly photoreceptors. Coated pits are found not only at the bases of the microvilli, but also in other parts of the plasma membrane. Degradative organelles, endoplasmic reticulum (ER) and mitochondria aggregate in the perinuclear region. The rough ER and smooth ER are more elaborate, the number of Golgi stacks, free ribosomes and polysomes is increased, and the shape and distribution of heterochromatin within the nuclei are altered. Illuminated photoreceptors also interdigitate extensively with their neighbouring secondary pigment cells. These structural changes in illuminated fly photoreceptor cells indicate an increase in membrane turnover and cellular metabolism. When applied to the eye, Lucifer Yellow spreads into the extracellular space and is taken up only by the illuminated photoreceptor cells. These cells show the same structural modifications as above. Horseradish peroxidase applied in the same way is observed in pinocytotic vesicles and degradative organelles of the illuminated cells. Hence, the light-induced uptake of extracellular compounds takes place in vivo at least partially as a result of an increase in pinocytosis.
对家蝇复眼中的单个光感受器细胞进行选择性照射,随后与周围未照射的光感受器进行电子显微镜比较。照射细胞的视小杆基本未受影响,但细胞中被膜小窝、各种类型的囊泡和降解细胞器的数量增加;其中一些降解细胞器是首次在果蝇光感受器中被描述。被膜小窝不仅存在于微绒毛基部,也存在于质膜的其他部位。降解细胞器、内质网(ER)和线粒体聚集在核周区域。粗面内质网和滑面内质网更为复杂,高尔基体堆叠、游离核糖体和多聚核糖体的数量增加,细胞核内异染色质的形状和分布发生改变。受照射的光感受器还与其相邻的次级色素细胞广泛交错。受照射的果蝇光感受器细胞中的这些结构变化表明膜更新和细胞代谢增加。当应用于眼睛时,荧光黄扩散到细胞外空间,并且仅被受照射的光感受器细胞摄取。这些细胞显示出与上述相同的结构修饰。以相同方式应用的辣根过氧化物酶在受照射细胞的胞饮小泡和降解细胞器中被观察到。因此,光诱导的细胞外化合物摄取至少部分是由于胞饮作用增加而在体内发生的。