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Elicitor-stimulated ion fluxes and O2− from the oxidative burst are essential components in triggering defense gene activation and phytoalexin synthesis in parsley

机译:激发子刺激的离子通量和氧化爆发产生的O2-是欧芹中触发防御基因激活和植物抗毒素合成的重要成分

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摘要

Fungal elicitor stimulates a multicomponent defense response in cultured parsley cells (Petroselinum crispum). Early elements of this receptor-mediated response are ion fluxes across the plasma membrane and the production of reactive oxygen species (ROS), sequentially followed by defense gene activation and phytoalexin accumulation. Omission of Ca2+ from the culture medium or inhibition of elicitor-stimulated ion fluxes by ion channel blockers prevented the latter three reactions, all of which were triggered in the absence of elicitor by amphotericin B-induced ion fluxes. Inhibition of elicitor-stimulated ROS production using diphenylene iodonium blocked defense gene activation and phytoalexin accumulation. O2 but not H2O2 stimulated phytoalexin accumulation, without inducing proton fluxes. These results demonstrate a causal relationship between early and late reactions of parsley cells to the elicitor and indicate a sequence of signaling events from receptor-mediated activation of ion channels via ROS production and defense gene activation to phytoalexin synthesis. Within this sequence, O2 rather than H2O2 appears to trigger the subsequent reactions.
机译:真菌激发子刺激培养的欧芹细胞(Petroselinum crispum)中的多组分防御反应。这种受体介导的反应的早期元素是穿过质膜的离子通量和活性氧(ROS)的产生,随后依次是防御基因激活和植物抗毒素的积累。从培养基中省略Ca 2 + 或通过离子通道阻滞剂抑制激发子刺激的离子通量阻止了后三个反应,这两个反应都是在两性霉素B诱导的离子不存在激发子的情况下触发的。通量。使用二亚苯基碘鎓抑制激发子刺激的ROS产生可阻止防御基因激活和植物抗毒素积聚。 O2 -而不刺激H2O2刺激植物抗毒素的积累,而不会引起质子通量。这些结果证明了欧芹细胞与激发子的早期反应和晚期反应之间存在因果关系,并表明了一系列信号事件,这些事件是由受体介导的经由ROS产生的离子通道激活和防御基因激活到植物抗毒素合成的。在此顺序内,似乎会以O2 -而不是H2O2触发后续反应。

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