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Updated: Nov 27, 2025

Agrobacterium tumefaciens-Mediated Genetic Transformation of Narrowleaf Plantain
Published on: March 17, 2023
Agrobacterium tumefaciens-Mediated Transformation of Fonsecaea monophora and Fonsecaea erecta for Host-Environment
Cristina Isabel Ferrer Villena1, Renata Rodrigues Gomes2, Larissa Fernandes3
1Engineering Bioprocess and Biotechnology Graduate Program, Department of Bioprocess Engineering and Biotechnology, Federal University of Paraná, Curitiba 81530-000, Brazil.
Abstract:
The fungal genus Fonsecaea contains etiological agents of human chromoblastomycosis, a (sub)tropical, (sub)cutaneous implantation disease caused by plant contact. The invasive potential differs significantly between species. Infections by Fonsecaea monophora are believed to originate from the environment and the species has been reported as one of the main causative agents of the disease, but also of cases of primary brain infection. The epidemiology of the disease has not been fully elucidated and questions related to its infection route and virulence are still to be clarified. The environmental species Fonsecaea erecta was isolated from organic material and living plants in endemic areas for chromoblastomycosis in Brazil. The present paper describes Agrobacteriumtumefaciens-mediated transformation (AMT) of the environmental species F. erecta and the pathogenic species F. monophora. We propose the use of Agrobacterium transformation for future gene function studies related to Fonsecaea virulence and pathogenicity. We evaluated the co-cultivation ratios 1:1, 10:1 and 100:1 (Agrobacterium:conidia) at 28 °C during 72 h. pAD1625 and pCAMDsRed plasmids were inserted into both species. Confirmation of transformation was realized by hph gene amplification and Southern blot determined the amount of foreign DNA integrated into the genome. In order to evaluate a potential link between environmental and clinical strains, we obtained red fluorescent transformants after pCAMDsRed insertion. We observed by confocal fluorescence microscopy that both F. monophora and F. erecta were able to colonize the palm Bactris gasipaes, penetrating the epidermis. These results contribute to understanding the ability of Fonsecaea species to adapt to different environmental and host conditions.
Insights
Agrobacterium tumefaciens-mediated transformation (AMT) was used to genetically modify Fonsecaea species, enabling future studies on fungal virulence and pathogenicity. Both F. monophora and F. erecta colonized plant tissue, revealing insights into Fonsecaea adaptation.
Area of Science:
- Mycology
- Molecular Biology
- Plant Pathology
Background:
- The fungal genus Fonsecaea causes human chromoblastomycosis, a subcutaneous infection.
- Fonsecaea monophora is a significant etiological agent, with potential for primary brain infections.
- Understanding Fonsecaea virulence and infection routes requires advanced genetic tools.
Purpose of the Study:
- To establish Agrobacterium tumefaciens-mediated transformation (AMT) for Fonsecaea species.
- To enable future gene function studies related to Fonsecaea virulence and pathogenicity.
- To investigate the colonization ability of Fonsecaea species in a plant model.
Main Methods:
- Agrobacterium tumefaciens-mediated transformation (AMT) was performed on Fonsecaea erecta and Fonsecaea monophora.
- Co-cultivation ratios, plasmids (pAD1625, pCAMDsRed), and incubation conditions were optimized.
- Transformation was confirmed via hph gene amplification and Southern blot; colonization was assessed using confocal fluorescence microscopy.
Main Results:
- Successful genetic transformation of both F. erecta and F. monophora was achieved using AMT.
- Red fluorescent transformants were generated, allowing visualization of fungal colonization.
- Both species demonstrated the ability to colonize and penetrate the epidermis of the palm Bactris gasipaes.
Conclusions:
- AMT is a viable tool for genetic manipulation of Fonsecaea species.
- This methodology facilitates future research into the virulence factors of Fonsecaea.
- The study provides insights into the host-pathogen interactions and adaptive capabilities of Fonsecaea species.
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