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Multiple paths of plant host toxicity are associated with the fungal toxin cercosporin

Research output: Contribution to journalArticlepeer-review

Abstract

The Cercospora species of fungi are responsible for leaf spot disease affecting many key economic crops. Most of these fungi secrete a toxic photodynamic molecule, cercosporin, that reacts with light and oxygen to produce reactive singlet oxygen (O-1(2)) contributing to fungal virulence. We show similar cellular localization and aetiology of cercosporin in the non-host Arabidopsis and the host Nicotiana benthamiana. Cercosporin accumulates in cell membranes in an oxidized state and in plastids in a mixture of redox states in a manner that is dependent on ongoing photosynthetic processes. We observed that cercosporin rapidly compromised photosynthesis as measured by F-v/F-m, NPQ, and photosystem I (PSI) parameters. Stomatal guard cells in particular demonstrated rapid light-dependent membrane permeabilization that led to changes in leaf conductance. We showed that cercosporin-mediated O-1(2) generation oxidized RNA to form 8-oxoguanosine (8-oxoG), leading to translational attenuation and induction of O-1(2) signature gene transcripts. We also identified a subset of cercosporin-induced transcripts that were independent of the photodynamic effect. Our results point to the multimodal action of cercosporin that includes the inhibition of photosynthesis, the direct oxidation of nucleic acid residues and the elicitation of complex transcriptome responses.
Original languageEnglish
Pages (from-to)2542-2557
Number of pages16
JournalPlant Cell And Environment
Volume46
Issue number8
Early online date22 May 2023
DOIs
Publication statusPublished - Aug 2023

Funding

Funding Information: We thank Dr. Judy Callis for the UBI10:IAA1‐LUC line and Dr. Andreas Nubenfuhr for the vac‐ck and pm‐rk lines. We also thank Anna Shtabnitskaya and Sara Myslicova for their assistance in the project as part of the World ORT Program. MARSseq preparation and analysis was done with critical advice from Dr. Hadas Keren‐Shaul and Dr. Dena Leshkowitz from the Life Science Core Facility of the Weizmann Institute of Science. We thank Tevi Mehlman for excellent technical assistance in RNA oxidation analysis, Dr. Yoseph Addadi for excellent technical assistance with the Leica TCS SP8 spectral imaging microscope and Dr Raanan Carmieli for excellent technical assistance with the EPR spectroscopy. The spectral images in this paper were acquired at the de Picciotto‐Lesser Cell Observatory in memory of Wolf and Ruth Lesser supported by the Elsie and Marvin Dekelboum Family Foundation unit. Robert Fluhr is grateful to the Israel Science Foundation for supporting this research Grant #2106/21. Publisher Copyright: © 2023 The Authors. Plant, Cell & Environment published by John Wiley & Sons Ltd.

All Science Journal Classification (ASJC) codes

  • Physiology
  • Plant Science

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