Publication | Open Access
Chitinolytic <i>Bacillus subtilis</i> Ege-B-1.19 as a biocontrol agent against mycotoxigenic and phytopathogenic fungi
12
Citations
32
References
2018
Year
Protease ActivitiesBacteriologyBiocontrol AgentBacterial PathogensFood MicrobiologyMicrobial EcologyFungal BiologyPublic HealthFungal Cell FactoryFungal PathogenMycoproteinMycologyIndustrial MycologyFusarium Solani Kctc6328Antifungal AgentPhytopathogenic FungiBiotechnologyMicrobiologyMolecular WeightMedicine
Abstract Background Biological control of pathogenic fungi is a possible alternate to the chemical control, which is harmful to humans and environment. Soil-borne Bacillus strains can be potential biocontrol agents and a source of lytic enzymes. Aim This study aimed to examine biocontrol potential and lytic enzyme activities of a soil isolate Bacillus subtilis Ege-B-1.19. Materials and methods Strain was identified by biochemical and 16S rRNA gene analysis and its biocontrol activity was investigated against Aspergillus niger EGE-K-213, Aspergillus foetidus EGE-K-211, Aspergillus ochraceus EGE-K-217, Fusarium solani KCTC6328, Rhizoctonia solani KACC40111 and Colletotrichum gloeosporioides KACC40689. Chitinase, chitosanase, N-acetyl-β-hexosaminidase and protease activities of B. subtilis Ege-B-1.19 were also determined. Chitosanase was purified using Sephadex G-150 column and its molecular weight was determined by SDS-PAGE. Chitooligosaccharides production using chitosanase was carried out and analysed by TLC and HPLC. Results Results depicted that B. subtilis Ege-B-1.19 has shown inhibitory effects against all the test fungi. Chitinase, chitosanase, N-acetyl-β-hexosaminidase and protease activities were determined as 2.7 U mL −1 , 7.2 U mL −1 , 6.2 U mL −1 and 12.2 U mL −1 , respectively. Molecular weight of purified chitosanase was 44 kDa. Chitosanase hydrolysed chitosan to glucosamine (GlcN), dimers (GlcN) 2 and trimers (GlcN) 3 . Conclusion Bacillus subtilis Ege-B-1.19 can be anticipated as useful biocontrol agent and its chitosanase can be utilized for enzymatic synthesis of chitooligosaccharides.
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