4.4 Article

Siderophore Production by Rhizosphere Biological Control Bacteria Brevibacillus brevis GZDF3 of Pinellia ternata and Its Antifungal Effects on Candida albicans

Journal

JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY
Volume 30, Issue 5, Pages 689-699

Publisher

KOREAN SOC MICROBIOLOGY & BIOTECHNOLOGY
DOI: 10.4014/jmb.1910.10066

Keywords

Brevibacillus brevis GZDF3; siderophore; Candida albicans; Pinellia ternata

Funding

  1. Medical Biotechnology Engineering Research Center of Guizhou Medical University [2016002]
  2. Guizhou Science and Technology Plan Project (Guizhou Science and Technology Support Program) [[2017]2833]
  3. Academic New Seedling Cultivation and Innovation Exploration Project (Guizhou Science and Technology platform talents) [[2018]5779-53]
  4. Bureau of Science AMP
  5. Technology of Guiyang City [ZHUKEJ [20151001] SHE-15]
  6. Guizhou Medical University [ZHUKEJ [20151001] SHE-15]
  7. Doctoral Cultivating Fund of Guizhou Medical University [Academy-PHD-J2014-018]
  8. scientific plan of Guizhou provincial health and fitness commission [gzwjkj2015-1-028]

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Brevibacillus brevis GZDF3 is a gram-positive, plant growth-promoting rhizosphere bacterium (PGPR) isolated from the rhizosphere soil of Pinellia ternata (an important herb in traditional Chinese medicine). The GZDF3 strain produces certain active compounds, such as siderophores, which are the final metabolite products of non-ribosomal peptide synthetase (NRPS) and independent non-ribosomal peptide synthetase (NIS) activity. With the present study, we attempted to investigate the siderophore production characteristics and conditions of Bacillus sp. GZDF3. The antibacterial activity of the siderophores on pathogenic fungi was also investigated. Optimal conditions for the synthesis of siderophores were determined by single factor method, using sucrose 15 g/l, asparagine 2 g/l, 32 degrees C, and 48 h. The optimized sucrose asparagine medium significantly increased the production of siderophores, from 27.09% to 54.99%. Moreover, the effects of different kinds of metal ions on siderophore production were explored here. We found that Fe3+ and Cu2+ significantly inhibited the synthesis of siderophores. The preliminary separation and purification of siderophores by immobilized-metal affinity chromatography (IMAC) provides strong antibacterial activity against Candida albicans. The synergistic effect of siderophores and amphotericin B was also demonstrated. Our results have shown that the GZDF3 strain could produce a large amount of siderophores with strong antagonistic activity, which is helpful in the development of new biological control agents.

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