首页> 外文学位 >Characterization of Arabidopsis activation-tagged fumonisin B1-resistant (fbr) mutants in programmed cell death (PCD) and plant development.
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Characterization of Arabidopsis activation-tagged fumonisin B1-resistant (fbr) mutants in programmed cell death (PCD) and plant development.

机译:在程序性细胞死亡(PCD)和植物发育中表征拟南芥激活标记的伏马菌素B1抗性(fbr)突变体。

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摘要

A forward molecular genetics approach was used to isolate gh3.9-1 and D-fbr7 from populations of Arabidopsis activation-tagged T-DNA mutants in a germination/development-based selection scheme to identify fumonisin B1-resistant (fbr) mutants. The characterization of the functions of affected genes in gh3.9-1 and D-fbr7 is the primary focus of the studies presented in this thesis.; The GH3.9 gene, belonging to the Arabidopsis Group II primary auxin-responsive GH3 gene family, was found to be affected by the T-DNA insertion in the gh3.9-1 mutant. Phenotypic characterization studies performed with gh3.9-1 mutant along with GH3.9 RNAi lines and additional T-DNA insertions identified in the same region, revealed that GH3.9 might be involved in root development-related processes, as the mutants displayed a long-root length phenotype. GH3.9 expression analysis revealed that GH3.9 transcript accumulation was repressed in seedlings treated with exogenous IAA treatment. Furthermore, gh3.9-1 T-DNA insertions and RNAi lines showed sensitivity to IAA-mediated root growth inhibition and resistance towards Methyl Jasmonate-mediated root growth inhibition. These results have provided new functions for GH3.9 in roots, where it likely controls auxin activity through its amino acid conjugation activity.; D-fbr7 was identified as a novel FB1-resistant ( fbr) mutant that was subsequently also found to be defective in embryo development. Different physiological assays conducted to determine resistance of D-fbr7 to FB1-induced cell death at different stages of plant development showed that at both seedling and mature development stages, D-fbr7 displayed resistance to FB1 and FB1-induced senescence. Expression analysis revealed that CLE19, member of CLAVATA3-LIKE (CLE) gene family is involved in causing the fbr phenotype and small RNAs identified in the intergenic region adjacent to D-fbr7 might be involved in conferring embryo lethality. These small RNAs identified by web-based computational approaches were validated by northern expression analysis. These studies have provided evidence of novel roles for CLE19 and small RNAs in affecting plant development.
机译:在基于发芽/发育的选择方案中,使用正向分子遗传学方法从拟南芥激活标签的T-DNA突变体群体中分离出gh3.9-1和D-fbr7,以鉴定伏马毒素B1抗性(fbr)突变体。 gh3.9-1和D-fbr7基因的功能表征是本文研究的重点。 GH3.9基因属于拟南芥第II组初级生长素应答性GH3基因家族,被gh3.9-1突变体中的T-DNA插入所影响。用gh3.9-1突变体以及GH3.9 RNAi系和在同一区域鉴定出的其他T-DNA插入进行的表型表征研究表明,GH3.9可能参与了与根发育相关的过程,因为该突变体显示出长根长度表型。 GH3.9表达分析表明,用外源IAA处理的幼苗抑制了GH3.9转录本的积累。此外,gh3.9-1 T-DNA插入和RNAi系显示出对IAA介导的根生长抑制的敏感性和对茉莉酸甲酯介导的根生长抑制的抗性。这些结果为根部的GH3.9提供了新的功能,它可能通过其氨基酸结合活性来控制植物生长素的活性。 D-fbr7被鉴定为新型的FB1抗性(fbr)突变体,随后也发现其在胚胎发育中存在缺陷。在植物发育的不同阶段进行的不同生理测定以确定D-fbr7对FB1诱导的细胞死亡的抗性显示,在幼苗和成熟发育阶段,D-fbr7均显示对FB1和FB1诱导的衰老的抗性。表达分析表明,CLAVATA3-LIKE(CLE)基因家族成员CLE19参与导致fbr表型,在与D-fbr7相邻的基因间区域中鉴定出的小RNA可能与赋予胚胎致死力有关。通过基于网络的计算方法鉴定的这些小RNA已通过Northern表达分析进行了验证。这些研究提供了CLE19和小RNA在影响植物发育中新作用的证据。

著录项

  • 作者

    Khan, Sadaf.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Biology Molecular.; Biology Genetics.; Chemistry Biochemistry.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;遗传学;生物化学;植物学;
  • 关键词

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