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果蝇合子致死基因纯合的雌性生殖细胞活力。

Viability of Female Germ-Line Cells Homozygous for Zygotic Lethals in DROSOPHILA MELANOGASTER.

机构信息

Centro de Biologia Molecular, Consejo Superior de Investigaciones Cientificas, Universidad Autónoma de Madrid, Canto Blanco, Madrid-34, Spain.

出版信息

Genetics. 1983 Feb;103(2):235-47. doi: 10.1093/genetics/103.2.235.

Abstract

We have analyzed the viability of different types of X chromosomes in homozygous clones of female germ cells. The chromosomes carried viable mutations, single-cistron zygotic-lethal and semi-lethal mutations, or small (about six chromosome band) deletions. Homozygous germ-line clones were produced by recombination in females heterozygous for an X-linked, dominant, agametic female sterile.All the zygotic-viable mutants are also viable in germ cells. Of 16 deletions tested (uncovering a total of 93 bands) only 2 (of 4 and 5 bands) are germ-cell viable. Mutations in 15 lethal complementation groups in the zeste-white region were tested. When known, the most extreme alleles at each locus were tested. Only in five loci (33%) were the mutants viable in the germ line. Similar studies of the same deletions and point-mutant lethals in epidermal cells show that 42% of the bands and 77% of the lethal alleles are viable. Thus, germ-line cells have more stringent cell-autonomous genetic requirements than do epidermal cells.The eggs recovered from clones of three of the germ-cell viable zw mutations gave embryos arrested early in embryogenesis, although genotypically identical embryos derived from heterozygous oogonia die as larvae or even hatch as adult escapers. For two genes, homozygosis of the mutations tested also caused embryonic arrest of heterozygous female embryos, and in one case, the eggs did not develop at all. Germ-line clones of one quite leaky mutation gave eggs that were indistinguishable from normal. The abundance of genes whose products are required for oogenesis, whose products are required in the oocyte, and whose activity is required during zygotic development is discussed.

摘要

我们分析了纯合雌性生殖细胞克隆中不同类型 X 染色体的存活能力。这些染色体携带有存活突变、单顺反子合子致死和半致死突变,或小(约 6 个染色体带)缺失。通过对携带 X 连锁显性、无配子雌性不育的雌性杂合子进行重组,产生了纯合生殖系克隆。所有合子存活的突变体在生殖细胞中也是存活的。在 16 个缺失(总共覆盖 93 个带)中,只有 2 个(4 个和 5 个带)是生殖细胞存活的。在 zeste-white 区的 15 个致死互补群的突变进行了测试。当已知时,在每个基因座上测试了最极端的等位基因。只有在 5 个基因座(33%)中,突变体在生殖系中是存活的。对表皮细胞中相同缺失和点突变致死的类似研究表明,42%的带和 77%的致死等位基因是存活的。因此,生殖细胞比表皮细胞具有更严格的细胞自主遗传要求。从三个生殖细胞存活 zw 突变克隆中回收的卵子产生了胚胎,这些胚胎在胚胎发生早期被阻滞,尽管基因型相同的胚胎源自杂合的卵原细胞,但它们会在幼虫期死亡,甚至孵化成成虫逃逸者。对于两个基因,测试的突变的纯合性也导致了杂合雌性胚胎的胚胎阻滞,在一种情况下,卵子根本没有发育。一个相当渗漏的突变的生殖系克隆产生的卵子与正常卵子无法区分。讨论了大量基因的产物对于卵子发生、卵子中所需的产物以及合子发育过程中所需的活性是必需的。

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