Antifungal activity of 8-methoxynaphthalen-1-ol isolated from the endophytic fungus Diatrype palmicola MFLUCC 17-0313 against the plant pathogenic fungus Athelia rolfsii on tomatoes

Author:

Tanapichatsakul Chutima1,Pansanit Acharavadee1,Monggoot Sakon2,Brooks Siraprapa1,Prachya Surasak3,Kittakoop Prasat345,Panuwet Parinya6,Pripdeevech Patcharee17

Affiliation:

1. School of Science, Mae Fah Luang University, Muang, Chiang Rai, Thailand

2. Institute of Beauty and Health Sciences Co.,Ltd. (IBHS/BKK), Sakdibhornssup Bldg., Makkasan, Ratchathewi, Bangkok, Thailand

3. Chulabhorn Research Institute, Laksi, Bangkok, Thailand

4. Program in Chemical Sciences, Chulabhorn Royal Academy, Chulabhorn Graduate Institute, Laksi, Bangkok, Thailand

5. Center of Excellence on Environmental Health and Toxicology (EHT), CHE, Ministry of Education, Bangkok, Thailand

6. Laboratory of Exposure Assessment and Development for Environmental Research, Department of Environmental Health, Rollins School of Public Health, Emory University, Atlanta, GA, United States of America

7. Center of Chemical Innovation for Sustainability (CIS), Mae Fah Luang University, Muang, Chiang Rai, Thailand

Abstract

Thirty-four endophytic fungal isolates were obtained from the leaves of the medicinal plant Polyscias fruticosa, and their antagonistic activities against the growth of the common tomatoes plant pathogenic fungus Athelia rolfsii were initially screened using a dual culture assay. The endophytic fungus MFLUCC 17-0313, which was later molecularly identified as Diatrype palmicola, displayed the highest inhibition percentage (49.98%) in comparison to the others. This fungus was then chosen for further evaluation. Its culture broth and mycelia from a 10 L scale were separated and extracted using ethyl acetate, methanol, and hexane. Each extract was tested for antifungal activity against the same pathogen using a disc diffusion assay. Only the crude hexane extract of fungal mycelium showed antifungal activity. The hexane extract was fractioned using sephadex gel filtration chromatography and each fraction was tested for antifungal activity until the one with the highest inhibition percentage was obtained. The bioactive compound was identified as 8-methoxynaphthalen-1-ol using nuclear magnetic resonance spectroscopy and mass spectrometry. The minimum inhibition concentration of 8-methoxynaphthalen-1-ol was demonstrated at 250 µg/mL against the selected pathogen. Using the leaf assay, the solution of 8-methoxynapthalen-1-ol was tested for phytotoxic activity against A. rolfsii and was found to have no phytotoxic effects. These results showed that 8-methoxynaphthalen-1-ol has the potential for controlling the growth of A. rolfsii, the cause of Southern blight disease on tomatoes. This study may provide the foundation for future use of this compound as a biofungicide.

Funder

Mae Fah Luang University

Royal Golden Jubilee Ph.D. Programme

Center of Excellence on Environmental Health and Toxicology, Science, & Technology Postgraduate Education and Research Development Office (PERDO), Ministry of Education

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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