PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 4, 2026Plant Disease0 citations

Sensitivity of Ustilaginoidea virens to Albendazole and Fitness of Albendazole-Resistant Mutants

View Full Paper
PLPengfei LiCXChongjing XuCWChenguang Wang

Key Points

  • This research aims to assess the sensitivity of Ustilaginoidea virens to albendazole and investigate the development of resistance.
  • Evaluated sensitivity of 103 Ustilaginoidea virens strains using mycelial growth rate method.
  • Determined EC50 values for albendazole sensitivity ranging from 0.4246 to 2.6600 μg/ml.
  • Generated albendazole-resistant mutants using fungicide domestication and UV mutagenesis.
  • Conducted cross-resistance assays with azoxystrobin, propiconazole, and carbendazim.
  • Identified a unimodal distribution of sensitivity with a mean EC50 of 1.0984 ± 0.4590 μg/ml.
  • Resistance frequencies of mutant strains were 3.3% (domestication) and 6.7% (mutagenesis).
  • Eight out of nine mutants exhibited high-level resistance with RF > 100; one showed moderate resistance with RF > 80.
  • Resistant mutants exhibited significant fitness costs, including reduced mycelial growth and sporulation.

Abstract

Rice false smut (RFS), caused by Ustilaginoidea virens, severely reduces rice yield and grain quality, threatening food security. Although chemical control is the primary management strategy, prolonged use of fungicides has led to widespread resistance in U. virens. To address this issue, we evaluated the inhibitory potential of albendazole, a promising candidate fungicide, against U. virens. The sensitivity of 103 U. virens strains from five Chinese provinces was assessed using the mycelial growth rate method. The sensitivity baseline exhibited a unimodal distribution, with EC 50 values ranging from 0.4246 to 2.6600 μg/ml (mean: 1.0984 ± 0.4590 μg/ml), indicating strong inhibition of U. virens by albendazole. Despite its efficacy, the resistance risk of U. virens to albendazole remains unclear. To evaluate the potential for resistance development, we generated albendazole-resistant laboratory mutants through fungicide domestication and UV mutagenesis, with resistance frequencies of 3.3 and 6.7%, respectively. Among the nine resistant mutants, eight displayed high-level resistance (resistance factor RF > 100), and one showed moderate resistance (RF > 80), with stable inheritance of resistance. Resistant mutants displayed significant fitness costs, including reduced mycelial growth, sporulation, biomass production, inhibitory effect on the radicle of rice seeds, and cold tolerance. Cross-resistance assays revealed no cross-resistance with azoxystrobin or propiconazole but confirmed cross-resistance with carbendazim. Based on resistance frequency and fitness penalties, the resistance risk was evaluated as moderate. These findings provide critical guidance for the rational use of albendazole and highlight its potential as an alternative fungicide in RFS management.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd7ed48f933b5eed9ed3https://doi.org/10.1094/pdis-03-25-0524-re
Ask AI
Helpful
Bookmark
Share
View Full Paper