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February 8, 2026Microorganisms0 citationsOpen Access

Low Nitrogen Concentration and Acidic pH Enhance the Antifungal Activity Against Botrytis cinerea of an Endophytic Alternaria sp. Isolated from Opuntia ficus-indica

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LMLeonora MendozaUniversidad de Santiago de ChileCACamilo Alberto Morales AguirreRPRodolfo ParadaUniversidad de Santiago de Chile

Key Points

  • The aim is to evaluate how culture conditions impact antifungal compounds from an endophytic Alternaria sp. isolate.
  • Isolated endophytic fungus from Opuntia ficus-indica cladodes
  • Evaluated antifungal activity against Botrytis cinerea
  • Assessed effects of pH and nitrogen concentration on compound production
  • Used dual-culture and sandwiched Petri dish assays for testing
  • Antifungal activity significantly increased under acidic pH and low nitrogen conditions
  • Volatile compounds showed strongest inhibition at pH 4.5 and low ammonium concentration
  • Ethyl acetate extracts at 40 mg/L inhibited B. cinerea mycelial growth by 60%

Abstract

Endophytic fungi from the Cactaceae family are an underexplored source of bioactive secondary metabolites with potential applications in sustainable agriculture. This study investigated an endophytic fungus obtained from healthy cladodes of Opuntia ficus-indica growing in the Chilean Andean Precordillera. The influence of culture conditions, specifically pH and nitrogen concentration, on the production of diffusible and volatile antifungal compounds against the phytopathogen Botrytis cinerea was evaluated using dual-culture (confrontation) and sandwiched Petri dish assays. Morphological characteristics and molecular analyses confirmed that the isolate belongs to the genus Alternaria. Antifungal activity increased significantly under acidic conditions and limited nitrogen availability. The strongest inhibition by volatile compounds occurred at pH 4.5 and the lowest concentration of ammonium tartrate. Furthermore, ethyl acetate extracts at 40 mg/L obtained from Alternaria sp. cultures grown at pH 4.5 with 2.3 g/L ammonium tartrate inhibited B. cinerea mycelial growth by 60%. The study provides a framework for improving the yield of antifungal metabolites produced by Alternaria, contributing to the development of biofungicides for gray mold control.

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Cite This Study

Mendoza et al. (2026) studied this question.

synapsesocial.com/papers/698828770fc35cd7a8847f54https://doi.org/10.3390/microorganisms14020376
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