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Article

Study of the Herbicidal Potential and Infestation Mechanism of Fusarium oxysporum JZ-5 on Six Broadleaved Weeds

Academy of Agriculture and Forestry Sciences, Qinghai University, Xining 810016, China
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Author to whom correspondence should be addressed.
Microorganisms 2025, 13(7), 1541; https://doi.org/10.3390/microorganisms13071541
Submission received: 3 June 2025 / Revised: 17 June 2025 / Accepted: 27 June 2025 / Published: 30 June 2025
(This article belongs to the Special Issue Fungal Biology and Interactions—3rd Edition)

Abstract

Weeds compete with crops for resources, posing multiple negative impacts for agricultural production systems and triggering degradation of ecosystem services (e.g., alterations in the soil microbial community structure). Under the guidance of green plant protection, the development of efficient biocontrol strains with environmentally friendly characteristics has become a crucial research direction for sustainable agriculture. This study aimed to develop a fungal bioherbicide by isolating and purifying a pathogenic fungal strain (JZ-5) from infected redroot pigweed (Amaranthus retroflexus L.). The strain exhibited pathogenicity rates ranging from 23.46% to 86.25% against six weed species, with the most pronounced control efficacy observed against henbit deadnettle (Lamium amplexicaule L.), achieving a pathogenicity rate of 86.25%. Through comprehensive characterization of cultural features, morphological observations, and molecular biological identification, the strain was taxonomically classified as Fusarium oxysporum. Scanning electron microscopy revealed that seven days post-inoculation, F. oxysporum JZ-5 formed dense mycelial networks on the leaf surfaces of cluster mallow (Malva verticillata L.), causing severe tissue damage. Safety assessments demonstrated that the spore suspension (104 spores/mL) had no adverse effects on three crops: hulless barley (Hordeum vulgare var. coeleste L.), wheat (Triticum aestivum L.), and potato (Solanum tuberosum L.). These findings suggest that F. oxysporum strain JZ-5 warrants further investigation as a potential bioherbicide for controlling three problematic weed species—Chenopodium album L. (common lambsquarters), Elsholtzia densa Benth. (dense-flowered elsholtzia), and Lamium amplexicaule L. (henbit deadnettle)—in cultivated fields of hulless barley (Hordeum vulgare var. coeleste L.), wheat (Triticum aestivum L.), and potato (Solanum tuberosum L.). This discovery provides valuable fungal resources for ecologically sustainable weed management strategies, contributing significantly to the advancement of sustainable agricultural practices.
Keywords: weeds; herbicidal activity; crop safety; ultrastructure; fungal biocontrol weeds; herbicidal activity; crop safety; ultrastructure; fungal biocontrol

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MDPI and ACS Style

Zhang, S.; Zhu, H.; Ma, Y.; Cheng, L. Study of the Herbicidal Potential and Infestation Mechanism of Fusarium oxysporum JZ-5 on Six Broadleaved Weeds. Microorganisms 2025, 13, 1541. https://doi.org/10.3390/microorganisms13071541

AMA Style

Zhang S, Zhu H, Ma Y, Cheng L. Study of the Herbicidal Potential and Infestation Mechanism of Fusarium oxysporum JZ-5 on Six Broadleaved Weeds. Microorganisms. 2025; 13(7):1541. https://doi.org/10.3390/microorganisms13071541

Chicago/Turabian Style

Zhang, Suifang, Haixia Zhu, Yongqiang Ma, and Liang Cheng. 2025. "Study of the Herbicidal Potential and Infestation Mechanism of Fusarium oxysporum JZ-5 on Six Broadleaved Weeds" Microorganisms 13, no. 7: 1541. https://doi.org/10.3390/microorganisms13071541

APA Style

Zhang, S., Zhu, H., Ma, Y., & Cheng, L. (2025). Study of the Herbicidal Potential and Infestation Mechanism of Fusarium oxysporum JZ-5 on Six Broadleaved Weeds. Microorganisms, 13(7), 1541. https://doi.org/10.3390/microorganisms13071541

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