Unverified paper record
An optimized mung bean seedling model for characterizing virulence of Pseudomonas aeruginosa biofilm infections.
Biofilm · 18 Apr 2026 · 10.1016/j.bioflm.2026.100363
Abstract
Plant-based infection models provide cost effective and biologically relevant systems for investigating bacterial pathogenesis and virulence in living hosts. The mung bean seedling model enables the study of bacterial biofilms on living surfaces by allowing attachment and biofilm development on plants, but its broader use has been limited by methodological complexity and variability in experimental outcomes. Here, we present a modified mung bean seedling biofilm infection model for assessing Pseudomonas aeruginosa virulence that improves both consistency and practicality. The assay incorporates a bleach-based seed sterilization protocol that effectively reduces surface associated contaminants while maintaining high seed germination percentages. Additional refinements, including dehulling germinated seedlings, a shortened bacterial inoculation period, and plate-based incubation of seedlings at 37 °C, minimize variability in plant health outcomes while supporting development of gnotobiotic plants. Plant mortality, cotyledon emergence, and root branching were identified as rapid and quantitative measures of biofilm associated disease. Using this modified assay, reproducible differences in virulence were detected among P. aeruginosa strains, including reduced pathogenicity in a pqsR quorum sensing mutant. This simplified mung bean seedling model provides an accessible platform for studying biofilm associated virulence and screening genes involved in biofilm-mediated pathogenicity on a biotic surface.
Plant phenotyping relevance
ムングビーン幼植物を用いた感染・疾患表現型測定系の改良と再現性評価が研究の中心であり、植物死亡、子葉出現、根分枝を定量的な病徴指標として開発・検証している。
abstractHere, we present a modified mung bean seedling biofilm infection model for assessing Pseudomonas aeruginosa virulence that improves both consistency and practicality.
abstractPlant mortality, cotyledon emergence, and root branching were identified as rapid and quantitative measures of biofilm associated disease.
abstractUsing this modified assay, reproducible differences in virulence were detected among P. aeruginosa strains
Code and data availability
The paper reports mung bean seedling phenotyping measurements (mortality, cotyledon emergence, root branching, lengths/biomass, CFU counts), but no public dataset, code, or model deposit is provided. The only availability statement says data are available on request; supplementary files (mmc1.docx, mmc2.pptx) are not描述
No evidence-backed public reproduction asset is currently recorded.
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