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

Loading...
Thumbnail Image

Date

Journal Title

Journal ISSN

Volume Title

Publisher

National Academy of Sciences

Abstract

Description

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.

Citation

Endorsement

Review

Supplemented By

Referenced By