Harikrishnan Hariharan, Shanmugaiah Vellasamy, Nithya Karmegham, Balasubramanian Natesan, Sharma Mahaveer P, Gachomo Emma W, Kotchoni Simeon O
Department of Microbial Technology, School of Biological Sciences,, Madurai Kamaraj University, Tamil Nadu, India.
Department of Biology, Rutgers University, Camden, NJ, USA.
J Basic Microbiol. 2016 Feb;56(2):153-61. doi: 10.1002/jobm.201500362. Epub 2015 Dec 2.
The efficacy of a rhizobacterium Streptomyces aurantiogriseus VSMGT1014 for the production of bioactive metabolites with antifungal properties was evaluated under in vitro conditions. The production of bioactive metabolites by S. aurantiogriseus VSMGT1014 in International Streptomyces Project-2 (ISP-2) broth, supplemented with glucose and ammonium acetate was found to be the most suitable carbon and nitrogen sources for the maximum production of bioactive metabolites against rice pathogen, Rhizoctonia solani. The zone of inhibition range from 23.5 to 28.5 mm and 10.3 to 18.3 mm for glucose and ammonium acetate supplemented media, respectively. The culture filtrate of S. aurantiogriseus VSMGT1014 at pH 7.5, 37 °C at 120 rpm in 6 days of incubation showed the maximum production of bioactive metabolites with antagonistic potential. The crude metabolite was characterized by different spectral studies such as Ultraviolet spectrum, infrared-spectrum and based on the different analytical techniques, including thin layer chromatography (TLC) and high performance liquid chromatography (HPLC) with the retention time 29.4 and the bioactive metabolite was identified as phenazine, which was confirmed by pure phenazine compound as positive control.
在体外条件下评估了一种根际细菌金色链霉菌VSMGT1014产生具有抗真菌特性的生物活性代谢物的功效。发现金色链霉菌VSMGT1014在补充了葡萄糖和醋酸铵的国际链霉菌项目-2(ISP-2)肉汤中产生生物活性代谢物,这是针对水稻病原菌立枯丝核菌产生最大量生物活性代谢物最合适的碳源和氮源。对于补充了葡萄糖和醋酸铵的培养基,抑菌圈分别为23.5至28.5毫米和10.3至18.3毫米。金色链霉菌VSMGT1014的培养滤液在pH 7.5、37°C、120转/分钟培养6天时显示出具有拮抗潜力的生物活性代谢物的最大产量。通过紫外光谱、红外光谱等不同光谱研究以及包括薄层色谱(TLC)和高效液相色谱(HPLC)在内的不同分析技术对粗代谢物进行了表征,其保留时间为29.4,生物活性代谢物被鉴定为吩嗪,以纯吩嗪化合物作为阳性对照进行了确认。