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Role of electron transport chain of chloroplasts in oxidative burst of interaction between Erwinia amylovora and host cells

机译:叶绿体电子传递链在解淀粉欧文氏菌与宿主细胞相互作用的氧化爆发中的作用

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Erwinia amylovora is a necrogenic bacterium, causing the fire blight disease on many rosaceous plants. Triggering oxidative burst by E. amylovora is a key response by which host plants try to restrain pathogen spread. Electron transport chain (ETC) of chloroplasts is known as an inducible source of reactive oxygen species generation in various stresses. This research was performed to assess the role of this ETC in E. amylovora-host interaction using several inhibitors of this chain in susceptible and resistant apple and pear genotypes. All ETC inhibitors delayed appearance of disease necrosis, but the effects of methyl viologen, glutaraldehyde, and DCMU were more significant. In the absence of inhibitors, resistant genotypes showed an earlier and severe H2O2 generation and early suppression of redox dependent, psbA gene. The effects of inhibitors were corresponding to the redox potential of ETC inhibitory sites. In addition, delayed necrosis appearance was associated with the decreased disease severity and delayed H2O2 generation. These results provide evidences for the involvement of this ETC in host oxidative burst and suggest that chloroplast ETC has significant role in E. amylovora-host interaction.
机译:淀粉欧文氏菌是一种致病细菌,在许多蔷薇科植物上引起了火疫病。淀粉链球菌引起的氧化爆发是寄主植物试图抑制病原体扩散的关键反应。叶绿体的电子传输链(ETC)被认为是在各种压力下产生活性氧的可诱导来源。进行了这项研究,以评估该ETC在链霉菌-宿主相互作用中的作用,使用了该链的几种抑制剂在易感和抗性苹果和梨基因型中。所有的ETC抑制剂都可以延迟疾病坏死的出现,但是甲基紫精,戊二醛和DCMU的作用更为显着。在没有抑制剂的情况下,抗性基因型显示出较早和严重的H2O2产生,以及氧化还原依赖性psbA基因的早期抑制。抑制剂的作用与ETC抑制位点的氧化还原电位相对应。此外,坏死现象的出现与疾病严重程度的降低和H2O2产生的延迟有关。这些结果提供了该ETC参与宿主氧化爆发的证据,并表明叶绿体ETC在支链淀粉-宿主相互作用中具有重要作用。

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