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Isolation and characterization of ultraviolet light hypersensitive mutants of Arabidopsis thaliana.

机译:拟南芥紫外线敏感突变体的分离与鉴定。

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摘要

UV resistance mechanisms have been extensively studied in bacteria, fungi, and mammalian cells, but little is known about these mechanisms in plant cells. We have developed a genetic screen to help identify mutant Arabidopsis plants that are hypersensitive to the damaging effects of UV light. Six mutants, designated uvh1 through uvh6, were isolated by this screening procedure. The uvh mutants, which behave as single recessive traits, form six complementation groups. Although isolated as hypersensitive to UV-C light wavelengths, all of the uvh mutants are also hypersensitive to small fluences of UV-B wavelengths that do not affect wild type plants. UV-induced damage in the uvh mutants could be reduced or eliminated by subsequent exposure to light containing photoreactivating wavelengths, suggesting that the damage is pyrimidine dimers.; One of the mutants, uvh1, was shown not to be defective in protection of chloroplast and nuclear DNA from UV-induced damage, suggesting that the defect in uvh1 may be in repair or toleration of UV-induced damage. Further analysis revealed that levels of UV-induced DNA damage removal were the same in chloroplast and nuclear DNA of uvh1 and wild type plants. uvh1 was more sensitive than wild type to the rosette-inhibiting effects of ionizing radiation, suggesting a possible defect in recombinational repair in uvh1, however, the frequency of meiotic recombination was normal in uvh1. In a collaborative study with Dr. E. Signer, Department of Biology, Massachusetts Institute of Technology, uvh1 was shown to be defective in T-DNA integration, suggesting a defect in non-homologous genetic recombination.; As a first step in isolating the gene by map-based cloning, genetic and RFLP mapping techniques were used to localize the uvh1 mutation to a region of chromosome 3.
机译:在细菌,真菌和哺乳动物细胞中已经广泛研究了抗紫外线机制,但是对于植物细胞中的这些机制知之甚少。我们已经开发了一种遗传筛选技术,以帮助鉴定对紫外线的破坏作用高度敏感的拟南芥突变植物。通过该筛选程序分离了六个突变体,命名为uvh1至uvh6。 uvh突变体表现为单个隐性性状,形成六个互补组。尽管被分离为对UV-C光波长非常敏感,但所有uvh突变体也对不影响野生型植物的少量UV-B波长通量敏感。通过随后暴露于含有光活化波长的光,可以减少或消除uvh突变体中紫外线诱导的损害,表明该损害是嘧啶二聚体。突变体之一uvh1被证明在保护叶绿体和核DNA免受UV诱导的损伤方面没有缺陷,这表明uvh1的缺陷可能在于对UV诱导的损伤的修复或耐受。进一步的分析表明,UVh1和野生型植物的叶绿体和核DNA中,紫外线诱导的DNA损伤去除的水平相同。 uvh1对电离辐射的玫瑰花结抑制作用比野生型更敏感,表明uvh1的重组修复可能存在缺陷,但是uvh1的减数分裂重组频率是正常的。在与麻省理工学院生物系E. Signer博士的合作研究中,uvh1被证明在T-DNA整合中存在缺陷,表明非同源基因重组存在缺陷。作为通过基于图的克隆分离基因的第一步,使用遗传和RFLP定位技术将uvh1突变定位在3号染色体区域。

著录项

  • 作者

    Harlow, Greg Russell.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Biology Molecular.; Biology Genetics.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;遗传学;植物学;
  • 关键词

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