rds突变小鼠视网膜的发育和退化:杂合突变体和正常基因型嵌合体的观察。

S Sanyal, C Dees, G H Zeilmaker
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引用次数: 0

摘要

在纯合子突变小鼠中,光感受器细胞缺乏外节盘并缓慢退化。在杂合子中,受体细胞外节发育异常,并表现出由色素上皮吞噬体含量所显示的盘脱落特性的改变。受体细胞的退化速度也比纯合子慢。在一系列由rds/+和+/+基因型组成的嵌合体中分析了导致杂合视网膜病变稀释的相互作用的性质,这些嵌合体在颜色基因上也有所不同。在64%的嵌合体(28个中的18个)中,可以通过电子显微镜检测到rds/+和+/+类型的光感受器。这两种成分的相对比例和斑块大小在个体间差异很大,但两种光感受器的位置与上覆色素上皮细胞的基因型无关。在位于rds/+受体之上的rds/+和+/+型色素上皮细胞中,经常发现类似rds/+表型的异常大吞噬体,但在位于正常受体之上的任何基因型细胞中都没有发现。在12-18个月时检查的眼睛中,观察到外核层核周群体的局部和部分耗损,这些区域的位置也与色素上皮细胞的基因型无关。这些发现证实了rds基因在神经视网膜内并可能在受体细胞内起作用,并进一步表明rds基因与其视网膜正常等位基因之间的遗传相互作用发生在受体细胞内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and degeneration of retina in rds mutant mice: observations in chimaeras of heterozygous mutant and normal genotype.

In homozygous rds mutant mice the photoreceptor cells lack outer segment discs and slowly degenerate. In the heterozygotes the receptor cells develop abnormal outer segments and show altered disc shedding properties as revealed by the pigment epithelial phagosome content. The receptor cells also degenerate at a slower rate than in the homozygotes. The nature of the interaction resulting in dilution of the retinal lesion in the heterozygous retina was analysed in a series of chimaeras consisting of rds/+ and +/+ genotypes, which also differed in colour genes. In 64% of the chimaeras (18 out of 28) presence of both rds/+ and +/+ types of photoreceptors could be detected by electron microscopy. The relative proportion and patch size of the two components varied greatly between individuals but the location of the two types of photoreceptors was not related to the genotypes of the overlying pigment epithelial cells. Frequent occurrence of abnormally large phagosomes, resembling the rds/+ phenotype, was noted regularly in both rds/+ and +/+ types of pigment epithelial cells located above rds/+ types of receptors, but not in the cells of either genotype located above normal receptors. In the eyes examined at 12-18 months, localized and partial depletion of the perikaryal population in the outer nuclear layer was observed, and the location of such areas was also unrelated to the genotypes of the pigment epithelial cells. These findings confirm that the rds gene acts within the neural retina and possibly within the receptor cells and further show that the genetic interaction between the rds gene and its normal allele in the retina of the heterozygous mice takes place within the receptor cells.

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