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首页> 外文期刊>PLoS Genetics >A Link among DNA Replication, Recombination, and Gene Expression Revealed by Genetic and Genomic Analysis of TEBICHI Gene of Arabidopsis thaliana
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A Link among DNA Replication, Recombination, and Gene Expression Revealed by Genetic and Genomic Analysis of TEBICHI Gene of Arabidopsis thaliana

机译:拟南芥TEBICHI基因的遗传和基因组分析揭示了DNA复制,重组和基因表达之间的联系

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Spatio-temporal regulation of gene expression during development depends on many factors. Mutations in Arabidopsis thaliana TEBICHI (TEB) gene encoding putative helicase and DNA polymerase domains-containing protein result in defects in meristem maintenance and correct organ formation, as well as constitutive DNA damage response and a defect in cell cycle progression; but the molecular link between these phenotypes of teb mutants is unknown. Here, we show that mutations in the DNA replication checkpoint pathway gene, ATR, but not in ATM gene, enhance developmental phenotypes of teb mutants, although atr suppresses cell cycle defect of teb mutants. Developmental phenotypes of teb mutants are also enhanced by mutations in RAD51D and XRCC2 gene, which are involved in homologous recombination. teb and teb atr double mutants exhibit defects in adaxial-abaxial polarity of leaves, which is caused in part by the upregulation of ETTIN (ETT)/AUXIN RESPONSIVE FACTOR 3 (ARF3) and ARF4 genes. The Helitron transposon in the upstream of ETT/ARF3 gene is likely to be involved in the upregulation of ETT/ARF3 in teb. Microarray analysis indicated that teb and teb atr causes preferential upregulation of genes nearby the Helitron transposons. Furthermore, interestingly, duplicated genes, especially tandemly arrayed homologous genes, are highly upregulated in teb or teb atr. We conclude that TEB is required for normal progression of DNA replication and for correct expression of genes during development. Interplay between these two functions and possible mechanism leading to altered expression of specific genes will be discussed.
机译:在发育过程中基因表达的时空调节取决于许多因素。拟南芥TEBICHI(TEB)基因编码推定的解旋酶和含DNA聚合酶结构域蛋白的突变导致分生组织维持和正确器官形成方面的缺陷,以及组成型DNA损伤反应和细胞周期进程的缺陷;但是teb突变体的这些表型之间的分子联系是未知的。在这里,我们显示了DNA复制检查点途径基因ATR而非ATM基因的突变增强了teb突变体的发育表型,尽管atr抑制了teb突变体的细胞周期缺陷。 teb突变体的发育表型也通过参与同源重组的RAD51D和XRCC2基因突变而得到增强。 teb和teb atr双重突变体在叶片的前后轴极性上均存在缺陷,这部分是由ETTIN(ETT)/ AUXIN响应因子3(ARF3)和ARF4基因的上调引起的。 ETT / ARF3基因上游的Helitron转座子可能参与了teb中ETT / ARF3的上调。基因芯片分析表明teb和teb atr引起Helitron转座子附近基因的优先上调。此外,有趣的是,复制的基因,尤其是串联排列的同源基因,在teb或teb atr中高度上调。我们得出结论,DNA复制的正常进行和发育过程中基因的正确表达需要TEB。将讨论这两个功能之间的相互作用以及导致特定基因表达改变的可能机制。

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