Systemic Acquired Resistance-Mediated Control of Pine Wilt Disease by Foliar Application With Methyl Salicylate

Bibliographic Details
Title: Systemic Acquired Resistance-Mediated Control of Pine Wilt Disease by Foliar Application With Methyl Salicylate
Authors: Hee Won Jeon, Ae Ran Park, Minjeong Sung, Namgyu Kim, Mohamed Mannaa, Gil Han, Junheon Kim, Yeonjong Koo, Young-Su Seo, Jin-Cheol Kim
Source: Frontiers in Plant Science, Vol 12 (2022)
Publisher Information: Frontiers Media S.A., 2022.
Publication Year: 2022
Collection: LCC:Plant culture
Subject Terms: pine wilt disease, methyl salicylate, systemic acquired resistance, foliar application, qRT-PCR, Plant culture, SB1-1110
More Details: Pine wilt disease (PWD), caused by the pinewood nematode, is the most destructive disease in pine forest ecosystems worldwide. Extensive research has been done on PWD, but effective disease management is yet to be devised. Generally, plants can resist pathogen attack via a combination of constitutive and inducible defenses. Systemic acquired resistance (SAR) is an inducible defense that occurs by the localized infection of pathogens or treatment with elicitors. To manage PWD by SAR in pine trees, we tested previously known 12 SAR elicitors. Among them, methyl salicylate (MeSA) was found to induce resistance against PWD in Pinus densiflora seedlings. In addition, the foliar applications of the dispersible concentrate-type formulation of MeSA (MeSA 20 DC) and the emulsifiable concentrate-type formulation of MeSA (MeSA 20 EC) resulted in significantly reduced PWD in pine seedlings. In the field test using 10-year-old P. densiflora trees, MeSA 20 DC showed a 60% decrease in the development of PWD. Also, MeSA 20 EC gave the best results when applied at 0.1 mM concentration 2 and 1 weeks before pinewood nematode (PWN) inoculation in pine seedlings. qRT-PCR analysis confirmed that MeSA induced the expression of defense-related genes, indicating that MeSA can inhibit and delay the migration and reproduction of PWN in pine seedlings by modulating gene expression. These results suggest that foliar application of MeSA could reduce PWD incidence by inducing resistance and provide an economically feasible alternative to trunk-injection agents for PWD management.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 1664-462X
Relation: https://www.frontiersin.org/articles/10.3389/fpls.2021.812414/full; https://doaj.org/toc/1664-462X
DOI: 10.3389/fpls.2021.812414
Access URL: https://doaj.org/article/3608c7d8201b4918ab8f97355d44b688
Accession Number: edsdoj.3608c7d8201b4918ab8f97355d44b688
Database: Directory of Open Access Journals
More Details
ISSN:1664462X
DOI:10.3389/fpls.2021.812414
Published in:Frontiers in Plant Science
Language:English