4.5 Article

Acibenzolar-S-Methyl Restricts Infection of Nicotiana benthamiana by Plantago Asiatica Mosaic Virus at Two Distinct Stages

期刊

MOLECULAR PLANT-MICROBE INTERACTIONS
卷 32, 期 11, 页码 1475-1486

出版社

AMER PHYTOPATHOLOGICAL SOC
DOI: 10.1094/MPMI-03-19-0087-R

关键词

acibenzolar-S-methyl; NPR1; plant immunity; systemic acquired resistance

资金

  1. Japan Society for the Promotion of Sciences (JSPS) [16H02536]
  2. Pesticide Science Society of Japan
  3. Grants-in-Aid for Scientific Research [16H02536] Funding Source: KAKEN

向作者/读者索取更多资源

Plant activators, including acibenzolar-S-methyl (ASM), are chemical compounds that stimulate plant defense responses to pathogens. ASM treatment inhibits infection by a variety of plant viruses, however, the mechanisms of this broad-spectrum and strong effect remain poorly understood. We employed green fluorescent protein (GFP)-expressing viruses and Nicotiana benthamiana plants to identify the infection stages that are restricted by ASM. ASM suppressed infection by three viral species, plantago asiatica mosaic virus (PlAMV), potato virus X (PVX), and turnip mosaic virus (TuMV), in inoculated cells. Furthermore, ASM delayed the long-distance movement of PlAMV and PVX, and the cell-to-cell (short range) movement of TuMV. The ASM-mediated delay of long-distance movement of PlAMV was not due to the suppression of viral accumulation in the inoculated leaves, indicating that ASM restricts PIAMV infection in at least two independent steps. We used Arabidopsis thaliana mutants to show that the ASM-mediated restriction of PlAMV infection requires the NPR1 gene but was independent of the dicer-like genes essential for RNA silencing. Furthermore, experiments using protoplasts showed that ASM treatment inhibited PlAMV replication without cell death. Our approach, using GFP-expressing viruses, will be useful for the analysis of mechanisms underlying plant activator-mediated virus restriction.

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