Niswander L, Yee D, Rinchik E M, Russell L B, Magnuson T
Developmental Biology Center, Case Western Reserve University, Cleveland, Ohio 44106.
Development. 1988 Jan;102(1):45-53. doi: 10.1242/dev.102.1.45.
The albino deletion complex in the mouse represents 37 overlapping chromosomal deficiencies that have been arranged into at least twelve complementation groups. Many of the deletions cover regions of chromosome 7 that contain genes necessary for early embryonic development. The work reported here concentrates on two of these deletions (c6H, c11DSD), both of which were known to be lethal around the time of gastrulation when homozygous. A detailed embryological analysis has revealed distinct differences in the lethal phenotype associated with the c6H and c11DSD deletions. c6H homozygous embryos are grossly abnormal at day 7.5 of gestation, whereas c11DSD homozygous embryos appear abnormal at day 8.5 of gestation. There is no development of the extraembryonic ectoderm in c6H homozygotes, whereas extensive development of this tissue type occurs in c11DSD homozygotes. The visceral endoderm is abnormally shaped and the parietal endoderm appears to be overproduced in c6H homozygotes; these structures are not affected in c11DSD homozygotes. The embryonic ectoderm is runted in both types of embryo and it is not possible to obtain homozygous embryo-derived stem-cell lines for either deletion. Mesoderm formation occurs in the c11DSD but not in the c6H homozygotes. The c11DSD deletion chromosome complements the c6H chromosome in that the lethal phenotype of the compound heterozygote is similar to that of the c11DSD homozygote. These results suggest that a gene(s) necessary for normal development of the extraembryonic ectoderm is present in the c11DSD but deficient in the c6H deletion chromosome.
小鼠中的白化缺失复合体代表37个重叠的染色体缺失,这些缺失已被归为至少12个互补群。许多缺失覆盖了7号染色体上包含早期胚胎发育所需基因的区域。本文报道的工作集中于其中两个缺失(c6H、c11DSD),已知这两个缺失纯合时在原肠胚形成期左右是致死的。详细的胚胎学分析揭示了与c6H和c11DSD缺失相关的致死表型的明显差异。c6H纯合胚胎在妊娠第7.5天时严重异常,而c11DSD纯合胚胎在妊娠第8.5天时出现异常。c6H纯合子中胚外外胚层不发育,而这种组织类型在c11DSD纯合子中广泛发育。c6H纯合子中脏内胚层形状异常,壁内胚层似乎过度产生;这些结构在c11DSD纯合子中不受影响。两种类型的胚胎中胚胎外胚层都发育不良,并且无法获得这两种缺失的纯合胚胎来源的干细胞系。中胚层形成发生在c11DSD纯合子中,而在c6H纯合子中不发生。c11DSD缺失染色体与c6H染色体互补,因为复合杂合子的致死表型与c11DSD纯合子相似。这些结果表明,中胚外外胚层正常发育所需的一个或多个基因存在于c11DSD中,但在c6H缺失染色体中缺乏。