Durairaj Kaliannan, Velmurugan Palanivel, Park Jung-Hee, Chang Woo-Suk, Park Yool-Jin, Senthilkumar Palaninaicker, Choi Kyung-Min, Lee Jeong-Ho, Oh Byung-Taek
Division of Biotechnology, Advanced Institute of Environment and Bioscience, College of Environmental and Bioresource Sciences, Chonbuk National University, Iksan, Jeonbuk 54596, South Korea.
Department of Environmental Science, Periyar University, Periyar Palkalai Nagar, Salem-636011, Tamil Nadu, India.
FEMS Microbiol Lett. 2017 Dec 15;364(23). doi: 10.1093/femsle/fnx225.
Phytopathogenic bacteria have caused significant damage to agricultural crops in both controlled and open cultivation practices, imposing heavy losses to farmers. Thereby, the goal of this study was to evaluate Pseudomonas aeruginosa and Bacillus stratosphericus isolated from soil has antagonistic activity against bacterial phytopathogens with the potential to control plant diseases. Isolated novel strains of P. aeruginosa and B. stratosphericus showed broad spectrum of antagonistic activity against five bacterial phytopathogens. Antagonistic activity was examined under optimized pH (8 and 7), carbon sources (lactose and starch), nitrogen sources (ammonium chloride, peptone and ammonium nitrate) for P. aeruginosa and B. stratosphericus, respectively, and biocatalyst production (chitinase, protease and amylase) was studied. Additionally, up-regulation of defense-related genes (PR-1a and PAL) was studied in tomato plants treated with P. aeruginosa and B. stratosphericus. The induction of defense-related genes in tomato plant was triggered after 12 h treatment with a cell concentration of 0.20 O.D. for P. aeruginosa and 0.21 O.D. for B. stratosphericus during treatment period. Broad spectrum antagonistic activity was observed due to antibiotic and siderophore production by P. aeruginosa and B. stratosphericus.
植物病原细菌在可控栽培和露天栽培中均对农作物造成了严重损害,给农民带来了巨大损失。因此,本研究的目的是评估从土壤中分离出的铜绿假单胞菌和平流层芽孢杆菌对细菌性植物病原体的拮抗活性,以控制植物病害。分离出的新型铜绿假单胞菌和平流层芽孢杆菌菌株对五种细菌性植物病原体表现出广谱拮抗活性。分别在铜绿假单胞菌和平流层芽孢杆菌的优化pH值(8和7)、碳源(乳糖和淀粉)、氮源(氯化铵、蛋白胨和硝酸铵)条件下检测拮抗活性,并研究生物催化剂的产生(几丁质酶、蛋白酶和淀粉酶)。此外,还研究了用铜绿假单胞菌和平流层芽孢杆菌处理的番茄植株中防御相关基因(PR-1a和PAL)的上调情况。在处理期间,用浓度为0.20光密度的铜绿假单胞菌和0.21光密度的平流层芽孢杆菌处理番茄植株12小时后,触发了番茄植株中防御相关基因的诱导。由于铜绿假单胞菌和平流层芽孢杆菌产生抗生素和铁载体,观察到了广谱拮抗活性。