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首页> 外文期刊>Journal of general plant pathology >Bacterial DNA activates immunity in Arabidopsis thaliana
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Bacterial DNA activates immunity in Arabidopsis thaliana

机译:细菌DNA激活拟南芥的免疫力

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摘要

To initiate defense responses against invasion of pathogenic organisms, animals and plants must recognize microbe-associated molecular patterns (MAMPs). In this study, the elicitor activity of bacterial DNA on the model plant Arabidopsis thaliana was examined. EcoRI-digested plasmid DNA induced defense responses such as generation of reactive oxygen species and deposition of callose, whereas SmaI- and HapII-digested plasmid DNA and EcoRI-digested herring DNA did not remarkably induce these responses. Further, methylation of the CpG sequence of plasmid DNA and Escherichia coli DNA reduced the level of the defense responses. The endocytosis inhibitors wortmannin and amantadine significantly inhibited DNA-induced defense responses. These results suggest that non-methylated CpG DNA, as a MAMP, induced defense responses in Arabidopsis and that non-methylated DNA seems to be translocated into the cytoplasm by endocytosis.
机译:为了启动针对病原生物入侵的防御反应,动植物必须识别与微生物相关的分子模式(MAMP)。在这项研究中,检查了模型植物拟南芥细菌DNA的激发子活性。 EcoRI消化的质粒DNA诱导了防御反应,例如活性氧的产生和call质的沉积,而SmaI和HapII消化的质粒DNA和EcoRI消化的鲱鱼DNA却没有明显诱导这些反应。此外,质粒DNA和大肠杆菌DNA的CpG序列的甲基化降低了防御反应的水平。内吞抑制剂渥曼青霉素和金刚烷胺显着抑制DNA诱导的防御反应。这些结果表明,非甲基化的CpG DNA作为MAMP诱导了拟南芥的防御反应,并且非甲基化的DNA似乎通过内吞作用转移到了细胞质中。

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