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首页> 外文期刊>Plant Cell Reports >Differential sensitivity of Arabidopsis siRNA biogenesis mutants to genotoxic stress
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Differential sensitivity of Arabidopsis siRNA biogenesis mutants to genotoxic stress

机译:拟南芥siRNA生物发生突变体对遗传毒性胁迫的差异敏感性

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Plant response to stress has been linked to different RNA-silencing processes and epigenetic mechanisms. Our recent results showed that Arabidopsis thaliana Dicer-like (DCL) mutants were impaired in transgenerational changes, recombination frequency and stress tolerance. We also found that transgenerational changes were dependent on changes in DNA methylation. Here, we hypothesized that plants deficient in the production of small RNAs would show an impaired abiotic stress response. To test this, we exposed A. thaliana dcl2, dcl3, dcl4, dcl2 dcl3 (d2d3), dcl2 dcl4 (d2d4), dcl2 dcl3 dcl4 (d2d3d4), nrpd1a, rdr2 and rdr6 mutants to methyl methane sulfonate (MMS). We found dcl4 and rdr6 to be more sensitive and dcl2, dcl3, d2d3 and rdr2 plants more resistant to MMS, as shown by fresh weight, root length and survival rate. The in vitro repair assay showed the lower ability of dcl2 and dcl3 to repair UV-damaged DNA. To summarize, we found that whereas mutants impaired in transactivating siRNA biogenesis were more sensitive to MMS, mutants impaired in natural antisense siRNA and heterochromatic siRNA biogeneses were more tolerant. Our data suggest that plant response to MMS is in part regulated through biogenesis of various siRNAs.
机译:植物对胁迫的反应已经与不同的RNA沉默过程和表观遗传机制相关。我们最近的结果表明拟南芥切丁机(DCL)突变体的代际变化,重组频率和胁迫耐受性受到损害。我们还发现,跨代变化取决于DNA甲基化的变化。在这里,我们假设缺乏小RNA产生的植物将显示出非生物胁迫响应受损。为了对此进行测试,我们将拟南芥dcl2,dcl3,dcl4,dcl2 dcl3(d2d3),dcl2 dcl4(d2d4),dcl2 dcl3 dcl4(d2d3d4),nrpd1a,rdr2和rdr6的硫酸盐(甲基)突变体暴露出来。我们发现dcl4和rdr6更敏感,而dcl2,dcl3,d2d3和rdr2植物对MMS的抵抗力更高,如鲜重,根长和成活率所示。体外修复测定显示dcl2和dcl3修复紫外线损伤的DNA的能力较低。总而言之,我们发现虽然在反式激活siRNA生物发生中受损的突变体对MMS更为敏感,但在天然反义siRNA和异色siRNA生物基因中受损的突变体更为耐受。我们的数据表明,植物对MMS的反应部分受各种siRNA的生物发生调控。

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