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February 5, 2026Frontiers in Plant Science2 citationsOpen Access

Understanding MeJA induced-resistance to Phytophthora cinnamomi in holm oak embryogenic lines

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MMMarian MorcilloRSRosa Sanchez-LucasESEster Sales

Key Points

  • The central aim is to evaluate the proteomic profile of holm oak embryogenic lines in response to methyl jasmonate and subsequent pathogen challenge.
  • Elicitation of embryogenic lines with 0 or 50 µM MeJA for three days.
  • Subsequent inoculation with Phytophthora cinnamomi mycelia extract 5 days after treatment.
  • Proteins extracted and analyzed using nano-LC-MS/MS on an Orbitrap Fusion.
  • Multivariate analysis (sparse PLS-DA) to assess variance between treatments.
  • Identification of 3,205 protein species with high confidence.
  • MeJA treatment led to increased proteins linked to cell-wall biogenesis, carbon metabolism, and defense biosynthesis.
  • Inoculated samples exhibited enhanced levels of hormone-signaling and redox enzymes post-MeJA treatment.

Abstract

Holm oak ( Quercus ilex L.) decline in Mediterranean forests is mostly driven by the synergistic effects of drought and Phytophthora cinnamomi , yet effective protection strategies remain elusive. Previously, we reported that elicitation of holm oak embryogenic lines with 50 µM methyl jasmonate (MeJA), did not impair somatic embryo growth and development while inducing jasmonic acid (JA) and phenolic compounds accumulation, also resulting in increased H 2 O 2 levels and further JA production after challenged against active oomycete mycelium. Here, we evaluate the proteomic profile in the E00 embryogenic line of Q. ilex in response to this priming treatment and subsequent pathogen inoculation. To this end, embryogenic cultures were first treated with a solution of 0 or 50 µM MeJA for three days and five days later, inoculated or not with a P. cinnamomi mycelia extract. Twenty-four hours post-inoculation, samples were harvested, proteins extracted from the four treatments, and analysed by nano-LC-MS/MS on an Orbitrap Fusion. SEQUEST searches against a translated Q. ilex transcriptome identified 3,205 protein species with high confidence. Multivariate sparse PLS-DA captured 68.9% of variance and clearly discriminated between treatments, particularly separating inoculated from non-inoculated samples. MeJA elicitation led to the accumulation of proteins associated with cell-wall biogenesis, carbon metabolism, and amino-acid and phenylpropanoids biosynthesis. Some of these proteins were also accumulated, but to a lesser extent, by pathogen inoculation in non-elicited cultures. Notably, 24 hours after inoculation, MeJA – elicited samples showed enhanced abundance of proteins hormone-signalling and redox enzymes, including cinnamate-4-hydroxylase, caffeoyl-CoA O-methyltransferase, glutathione S-transferases, calreticulin, thaumatin-like proteins, catalase and chitinase. These results revealed that MeJA elicitation induced a primed state in Q. ilex embryogenic lines, reprograming the proteome to enhance early defence and oxidative stress response pathways upon P. cinnamomi e inoculation. This supports MeJA priming as a promising biotechnological strategy to improve holm oak resilience and productivity complementing integrated pest management and breeding strategies.

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Cite This Study

Morcillo et al. (2026) studied this question.

synapsesocial.com/papers/69843371f1d9ada3c1fb08d6https://doi.org/10.3389/fpls.2025.1740888
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