4.7 Article

Mechanism of resistance to Cucumber mosaic virus elicited by inoculation with Bacillus subtilis subsp. subtilis

Journal

PEST MANAGEMENT SCIENCE
Volume 78, Issue 1, Pages 86-94

Publisher

JOHN WILEY & SONS LTD
DOI: 10.1002/ps.6610

Keywords

Induced systemic resistance; molecular mechanism; Bacillus subtilis subsp; subtilis; Cucumber mosaic virus; Arabidopsis

Funding

  1. STDF (Science and Technology Development Fund, Egypt) [25463]
  2. Taif University researcher supporting project [TURSP- 2020/120]

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The study demonstrated that treatment with Bacillus subtilis subsp. subtilis effectively reduced the severity of Cucumber mosaic virus in cucumber and Arabidopsis, by inducing upregulation of defense genes and enhancing resistance mechanisms against the virus.
BACKGROUND Systemic resistance stimulated by rhizosphere bacteria is an important strategy for the management of plant viruses. The efficacy of Bacillus subtilis subsp. subtilis was assessed for protection of cucumber and Arabidopsis against Cucumber mosaic virus (CMV). Moreover, transcriptomic analysis was carried out for A. thaliana colonized with B. subtilis subsp. subtilis and infected with CMV. RESULTS Treatment with a cell suspension of Bacillus revealed a significant reduction of CMV severity in comparison to their control. All Arabidopsis mutants treated with B. subtilis showed a clear reduction in CMV accumulation. Disease severity data and virus concentration titer measurements correlated with gene up-regulation in microarray and reverse transcription quantitative polymerase chain reaction (RT-qPCR) experiments. Bacillus treatment increased Arabidopsis growth characteristics (fresh and dry weights and number of leaflets) under pot conditions. The molecular mechanisms by which Bacillus activated resistance to CMV were investigated. Using the microarray hybridization technique, we were able to determine the mechanism of resistance elicited by B. subtilis against CMV. The transcriptomic analysis confirmed the up-regulation of more than 250 defense-related genes in Arabidopsis expressing induced systemic resistance (ISR). RT-qPCR results validated the overexpression of defense genes (YLS9 and PR1 in Arabidopsis and PR1 and LOX in cucumber), implying their important roles in the stimulated defense response. CONCLUSION Through the study of microarray and RT-qPCR analyses, it can be concluded that the overexpression of pathogenesis-related genes was necessary to stimulate CMV defense in cucumber and Arabidopsis by B. subtilis subsp. subtilis.

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