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March 6, 2026Plant Disease0 citations

Identification and Fungicide Efficacy of Leaf Spot on Euonymus fortunei Caused by Alternaria alternata in China

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XTXiuli TangHLHuan LiuPQPeng Qin

Key Points

  • The aim is to identify the causative agent of leaf spot disease on Euonymus fortunei and evaluate fungicide efficacy against it.
  • Morphological identification and multilocus phylogenetic analysis were performed on Alternaria alternata.
  • Biological characterization assessed optimal growth conditions and the pathogen's response to NaCl and light regimes.
  • In vitro fungicide sensitivity assays evaluated the efficacy of various fungicides across developmental stages of the fungus.
  • Microscopic observations documented morphological changes induced by fungicides.
  • Alternaria alternata was identified as the causative agent of leaf spot on Euonymus fortunei in China.
  • Mycelial growth was optimal at 27 ℃, while conidial germination thrived under alkaline conditions (pH 9.0).
  • Marked differences in fungicide efficacy were noted between mycelial growth and conidial germination, indicating stage-dependent responses.
  • Certain fungicide mixtures showed improved efficacy over single treatments, suggesting potential synergistic interactions.

Abstract

Leaf spot disease has recently emerged on Euonymus fortunei in Shanxi Province, China, causing noticeable foliar lesions and reducing ornamental value. The causal agent was identified as Alternaria alternata based on morphological characteristics and multilocus phylogenetic analysis using five loci (Alt a1, gapdh, RPB2, ITS, and OPA10-2). Biological characterization showed that mycelial growth was optimal at 27 ℃ on oatmeal agar, whereas conidial germination was favored under alkaline conditions (pH 9.0). The pathogen was sensitive to NaCl stress but showed no significant response to different light regimes. In vitro fungicide sensitivity assays revealed marked differences in inhibitory efficacy between mycelial growth and conidial germination, indicating strong developmental stage-dependent responses. Certain fungicide mixtures exhibited enhanced inhibitory effects compared with single compounds, suggesting potential synergistic interactions. Microscopic observations further revealed fungicide-induced morphological abnormalities, including hyphae swelling, roughened surfaces, reduced sporulation, and deformation of conidial germ tubes. This study represents the first report of A. alternata causing leaf spot disease on E. fortunei in China and provides a basis for understanding pathogen biology and developing effective chemical management strategies for this emerging ornamental disease.

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Cite This Study

Tang et al. (2026) studied this question.

synapsesocial.com/papers/69aa710d531e4c4a9ff5b529https://doi.org/10.1094/pdis-01-26-0167-re
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