Jasmonic Acid Is a Key Regulator of Spider Mite-Induced Volatile Terpenoid and Methyl Salicylate Emission in Tomato
Open Access
- 1 August 2004
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 135 (4), 2025-2037
- https://doi.org/10.1104/pp.104.048694
Abstract
The tomato (Lycopersicon esculentum) mutant def-1, which is deficient in induced jasmonic acid (JA) accumulation upon wounding or herbivory, was used to study the role of JA in the direct and indirect defense responses to phytophagous mites (Tetranychus urticae). In contrast to earlier reports, spider mites laid as many eggs and caused as much damage on def-1 as on wild-type plants, even though def-1 lacked induction of proteinase inhibitor activity. However, the hatching-rate of eggs on def-1 was significantly higher, suggesting that JA-dependent direct defenses enhanced egg mortality or increased the time needed for embryonic development. As to gene expression, def-1 had lower levels of JA-related transcripts but higher levels of salicylic acid (SA) related transcripts after 1 d of spider mite infestation. Furthermore, the indirect defense response was absent in def-1, since the five typical spider mite-induced tomato-volatiles (methyl salicylate [MeSA], 4,8,12-trimethyltrideca-1,3,7,11-tetraene [TMTT], linalool, trans-nerolidol, and trans-β-ocimene) were not induced and the predatory mite Phytoseiulus persimilis did not discriminate between infested and uninfested def-1 tomatoes as it did with wild-type tomatoes. Similarly, the expression of the MeSA biosynthetic gene salicylic acid methyltransferase (SAMT) was induced by spider mites in wild type but not in def-1. Exogenous application of JA to def-1 induced the accumulation of SAMT and putative geranylgeranyl diphosphate synthase transcripts and restored MeSA- and TMTT-emission upon herbivory. JA is therefore necessary to induce the enzymatic conversion of SA into MeSA. We conclude that JA is essential for establishing the spider mite-induced indirect defense response in tomato.Keywords
This publication has 53 references indexed in Scilit:
- Differential Timing of Spider Mite-Induced Direct and Indirect Defenses in Tomato PlantsPlant Physiology, 2004
- Jasmonate‐deficient plants have reduced direct and indirect defences against herbivoresEcology Letters, 2002
- Attraction of a predator to chemical information related to nonprey: when can it be adaptive?Behavioral Ecology, 2000
- anthocyanin1 of Petunia Encodes a Basic Helix-Loop-Helix Protein That Directly Activates Transcription of Structural Anthocyanin GenesPlant Cell, 2000
- anthocyanin1 of Petunia Encodes a Basic Helix-Loop-Helix Protein That Directly Activates Transcription of Structural Anthocyanin GenesPlant Cell, 2000
- Antagonistic Effect of Salicylic Acid and Jasmonic Acid on the Expression of Pathogenesis-Related (PR) Protein Genes in Wounded Mature Tobacco LeavesPlant and Cell Physiology, 1998
- Host race formation in Tetranychus urticae: genetic differentiation, host plant preference, and mate choice in a tomato and a cucumber strainEntomologia Experimentalis et Applicata, 1993
- cDNA Cloning of Viroid-Induced Tomato Pathogenesis-Related Protein P23 (Characterization as a Vacuolar Antifungal Factor)Plant Physiology, 1993
- Plants are better protected against spider-mites after exposure to volatiles from infested conspecificsCellular and Molecular Life Sciences, 1992
- Isolation and identification of volatile kairomone that affects acarine predatorprey interactions Involvement of host plant in its productionJournal of Chemical Ecology, 1990