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Genetic Analysis of the Relationships between the Cell Surface and the Nuclei in PARAMECIUM TETRAURELIA

机译:四角兰细胞表面与细胞核关系的遗传分析。

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摘要

In Paramecium tetraurelia, a number of mutations have been shown to affect simultaneously cortical organization (attachment of trichocysts to the cortex) and nuclear division (Ruiz et al. 1976). In order to analyze the genetic and physiological basis of this correlation, we have isolated new mutations affecting the properties of the trichocysts and studied their genetic relationships with other previously known mutations. Of 24 to 28 loci controlling the biogenesis and properties of the trichocysts, mutations only in the 16 to 20 loci that control trichocyst attachment to the cortex result in nuclear defects. Cytological observations show that all of these mutants display the same set of nuclear abnormalities: in particular, rounded shape of the resting macronucleus, mispositioning and defective elongation of the dividing macronucleus and unequal repartition of the macro- and micronuclei. This common syndrome is independent of both the mutagenic origin and the mutated locus. Furthermore, by microinjection, it is possible to localize the site of action of the mutations in either the trichocyst compartment or the nontrichocyst compartment. It was found by this technique that the nuclear syndrome is also independent of the site of action of the mutation. All the genetic and physiological data support the conclusion that the nuclear defects are the consequence of the lack of trichocyst attachment to the cortex: in wild-type cells, trichocyst attachment would induce a membranar or perimembranar state necessary for correct nuclear positioning during cell division. In the absence of trichocyst attachment, the cortical control of nuclear division would be abolished. The possible involvement of cytoskeletal links between surface and nuclei is discussed.
机译:在四脲草履虫中,许多突变已显示出同时影响皮层组织(将毛囊囊附着于皮层)和核分裂(Ruiz等人,1976)。为了分析这种相关性的遗传和生理基础,我们分离了影响毛囊特性的新突变,并研究了它们与其他先前已知突变的遗传关系。在控制毛滴虫的生物发生和特性的24至28个基因座中,仅在控制毛滴虫附着于皮层的16至20个基因座中的突变会导致核缺陷。细胞学观察表明,所有这些突变体均显示出相同的核异常集:特别是静止大核的圆形形状,分裂大核的错位和缺陷延伸,以及大核和微核的不均等分配。这种常见的综合征与诱变起源和突变位点均无关。此外,通过显微注射,有可能将突变的作用位点定位在毛囊腔室或非毛囊腔室中。通过该技术发现核综合征也独立于突变的作用位点。所有的遗传学和生理学数据都支持以下结论:核缺陷是缺乏皮层的毛囊的结果:在野生型细胞中,毛囊的粘附会诱导细胞分裂过程中正确核定位所必需的膜或膜周围状态。如果没有毛囊囊附件,将取消对核分裂的皮质控制。讨论了表面和细胞核之间可能存在的细胞骨架联系。

著录项

  • 期刊名称 Genetics
  • 作者

    Jean Cohen; Janine Beisson;

  • 作者单位
  • 年(卷),期 1980(95),4
  • 年度 1980
  • 页码 797–818
  • 总页数 22
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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