Using Cassava Starch Processing By-Product for Bioproduction of 1-Hydroxyphenazine: A Novel Fungicide against Fusarium oxysporum

Author:

Phan Tu Quy1,Wang San-Lang23ORCID,Nguyen Thi Hanh24,Nguyen Thi Huyen5,Pham Thi Huyen Thoa1,Doan Manh Dung5ORCID,Tran Thi Ha Trang5,Ngo Van Anh5,Nguyen Anh Dzung5ORCID,Nguyen Van Bon5ORCID

Affiliation:

1. Department of Science and Technology, Tay Nguyen University, Buon Ma Thuot 630000, Vietnam

2. Department of Chemistry, Tamkang University, New Taipei City 25137, Taiwan

3. Life Science Development Center, Tamkang University, New Taipei City 25137, Taiwan

4. Doctoral Program in Applied Sciences, Tamkang University, New Taipei City 25137, Taiwan

5. Institute of Biotechnology and Environment, Tay Nguyen University, Buon Ma Thuot 630000, Vietnam

Abstract

This study aimed to develop the eco-friendly production of bioactive 1-hydroxyphenazine (HP) through fermentation using an industrial processing by-product of cassava as the main carbon/nitrogen source. Cassava starch processing by-product (CSPB) was screened as a suitable substrate for fermentation to produce HP with a high yield. Mixing CSPB with a minor amount of tryptic soy broth (TSB) at a ratio of 8/2 and with 0.05% K2HPO4 and 0.05% FeSO4 was effective in HP production by Pseudomonas aeruginosa TUN03. HP was also further scaled up through production on a bioreactor system, which achieved a higher level yield (36.5 µg/mL) in a shorter fermentation time (10 h) compared to its production in the flask (20.23 µg/mL after 3 days). In anti-fungal activity tests against various Fusarium phytopathogens, HP exhibited the most significant effect on Fusarium oxysporum F10. It could inhibit the mycelial growth of this fungus, with an inhibition rate of 68.7% and anti-spore germination activity of up to 98.4%. The results of the docking study indicate that HP effectively interacted with the protein 1TRY targeting anti-F. oxysporum, with all obtained docking parameters in the accepted range. This study supports the novel use of CSPB as the carbon/nitrogen source for P. aeruginosa fermentation to produce HP, a F. oxysporum anti-fungal agent reported here for the first time.

Funder

Tay Nguyen University, Vietnam

National Science and Technology Council, Taiwan

Publisher

MDPI AG

Reference40 articles.

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