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Elicitor-stimulated ion fluxes and O(2)(−) from the oxidative burst are essential components in triggering defense gene activation and phytoalexin synthesis in parsley

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PubMed Central1997-04-29 更新2026-04-25 收录
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https://pmc.ncbi.nlm.nih.gov/articles/PMC20805/
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资源简介:
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 Ca(2+) 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. O(2)(−) but not H(2)O(2) 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, O(2)(−) rather than H(2)O(2) appears to trigger the subsequent reactions.
提供机构:
National Academy of Sciences
创建时间:
1997-04-29
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