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April 23, 2026Molecules0 citationsOpen Access

Sakuranetin, a Natural Flavonoid, Promising to Manage Grapevine Diseases

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CGCorentin GriffonBDBrice DautrucheBLBilal Loumi

Key Points

  • This research investigates the potential of sakuranetin, a natural flavonoid, as a sustainable solution for managing grapevine diseases caused by specific pathogens.
  • Sakuranetin was purified from cherry branches and characterized using UHPLC-ESI-QTOF-MS and NMR.
  • Antifungal activity was evaluated through in vitro, in vivo, and in planta assays against B. cinerea and P. viticola.
  • Concentrations of sakuranetin were tested to assess their effects on mycelium growth, spore germination, and gene expression.
  • Significant in vitro inhibition of B. cinerea growth with an EC50 of 16.43 mg·L−1.
  • Total inhibition of spore germination of P. viticola at 1 mg·L−1 during in vitro tests.
  • In planta studies revealed no significant protection at 25 mg·L−1, even with some defense genes activated.

Abstract

Botrytis cinerea and Plasmopara viticola, the causal agents of grey mold and downy mildew, respectively, are two major grapevine pathogens whose control largely relies on synthetic fungicides, raising environmental and health concerns. Plant-derived secondary metabolites, particularly flavonoids involved in plant defense, represent promising sustainable alternatives. Among them, sakuranetin, a flavanone aglycone known for its antifungal activity in rice, remains poorly explored for grapevine protection. In this study, sakuranetin was purified from cherry branches (48 mg) and structurally characterized using UHPLC-ESI-QTOF-MS and NMR analyses. Its antifungal activity against B. cinerea and P. viticola was evaluated through in vitro, in vivo and in planta assays. For B. cinerea, our results showed a significant in vitro inhibition of mycelium growth, with EC50 values of 16.43 mg·L−1, while no protection of detached berries was observed. Against P. viticola, sakuranetin has no effect on the release of zoospores, but there is a total inhibition of spore germination at 1 mg·L−1 in vitro, confirmed in vivo on a foliar disc. In planta, no significant protection is observed at 25 mg·L−1, even if some targeted defense genes are induced. Further studies are needed to determine the best concentration of sakuranetin to use to manage B. cinerea and P. viticola in planta.

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Cite This Study

Griffon et al. (2026) studied this question.

synapsesocial.com/papers/69e9b80e85696592c86eb84chttps://doi.org/10.3390/molecules31081368
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