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Plant Disease· 2026Q1

New insights into the epidemiology of frogeye leaf spot of soybean ( Glycine max L.)

Oscar Pérez‐Hernández, Mahesh Bashyal, Michael David Miller, Veresia Cloughly et al.

Short summary

Frogeye leaf spot (FLS) epidemics in soybean progress with decelerating lesion accumulation, with logistic and Gompertz models best fitting observed disease dynamics.

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Key points

  • Logistic and Gompertz models best fit frogeye leaf spot (FLS) epidemic progress in soybean.
  • Apparent infection rates ranged from 0.10 to 0.19 across observed epidemics.
  • Lesion accumulation showed density-dependent dynamics with progressive deceleration.
  • It takes approximately 26-28 days for leaflets to reach a 40-lesion threshold in some FLS epidemics.

AI-generated from the title and abstract; the full text is not read.

Abstract

, is an important foliar disease of soybean in the United States, yet quantitative information describing FLS epidemic dynamics during soybean reproductive stages remains limited. This study characterized the temporal FLS progress under natural field conditions and evaluated disease risk using survival analysis. Field observations were conducted in university-managed soybean fields in northwestern Missouri during the 2017, 2019 and 2024 growing seasons, without artificial inoculation or fungicide application. Disease severity was quantified as lesion counts on tagged upper-canopy leaflets repeatedly photographed and analyzed over time. Disease progress was modeled using exponential, monomolecular, logistic, and Gompertz nonlinear growth models. Logistic and Gompertz models consistently provided the best fit. Apparent infection rates estimated from logistic models ranged from 0.10 to 0.19 across epidemics, and lesion accumulation showed evidence of density-dependent dynamics with progressive deceleration. Survival analysis estimated the time required for leaflets to reach a threshold of 40 lesions, corresponding to approximately 4 to 6% leaf area affected. Kaplan-Meier curves indicated that in 2017, the median time to reach this threshold was approximately 26 to 28 days after initial assessment, whereas in 2019, fewer than 50% of leaflets reached the threshold during the observation period. In 2024, disease development remained minimal, and lesions did not reach quantifiable levels. These results provide quantitative insights into FLS epidemics during soybean reproductive stages and highlight the value of integrating repeated field monitoring with nonlinear epidemic modeling and survival analysis to improve disease risk assessment and management decisions.

The authors' abstract, as published at the source. Plant Disease, 2026 · DOI ↗

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Field: Cell Biology

Cell BiologyBiochemistry, Genetics and Molecular Biology