首页> 外文期刊>Journal of Microbiology and Antimicrobials >Isolation of potent antibiotic producing Actinomycetes from marine sediments of Andaman and Nicobar Marine Islands
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Isolation of potent antibiotic producing Actinomycetes from marine sediments of Andaman and Nicobar Marine Islands

机译:从安达曼和尼科巴海洋群岛的海洋沉积物中分离出有效的产生抗生素的放线菌

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A total of six isolates of Actinomycetes were collected from marine sediments of Andaman Islands. Each isolate was tested against five pathogenic bacteria and also against some pathogenic fungi. Among the six isolates, one of the isolates showed potent activity against all the bacteria and fungi. These isolates appear to produce high anti-fungal and anti-bacterial compounds on potato dextrose agar and nutrient agar medium respectively, by using the agar diffusion method. The potent Actinomycetes were characterized by morphological methods consist of macroscopic and microscopic methods. The mycelium structure, color and arrangement of conidiophores were observed through the oil immersion (100X). Various biochemical tests performed for the identification of potent isolates are as follows: Melanin reaction, H2S production, tyrosine reaction, starch hydrolysis, casein hydrolysis, gelatin hydrolysis, milk coagulation and peptonization, nitrate reduction, temperature range of growth, pH tolerance and cell wall type by comparing all these results with the? Bergey’s manual of Determinative Bacteriology and the organisms were identified. All the isolates were identified to belong to the genus Streptomyces. Further purification of the spent medium may gives more activity than the standard antibiotics and also effective against some multidrug resistant pathogens.
机译:从安达曼群岛的海洋沉积物中收集了总共六株放线菌。每个分离物都针对五种致病细菌以及某些致病真菌进行了测试。在六个分离株中,分离株之一显示出对所有细菌和真菌的有效活性。通过使用琼脂扩散方法,这些分离株似乎分别在马铃薯葡萄糖琼脂和营养琼脂培养基上产生高抗真菌和抗菌化合物。通过形态学方法表征强放线菌,该方法包括宏观和微观方法。通过油浸(100X)观察到分生孢子的菌丝体结构,颜色和排列。为鉴定有效分离物而进行的各种生化测试如下:黑色素反应,H2S产生,酪氨酸反应,淀粉水解,酪蛋白水解,明胶水解,牛奶凝结和蛋白水解,硝酸盐还原,生长温度范围,pH耐受性和细胞壁通过比较所有这些结果与类型?伯吉的确定性细菌学手册和这些生物被确定。所有分离物均被鉴定为属于链霉菌属。与标准抗生素相比,用过的培养基的进一步纯化可能会提供更多的活性,并且还可以有效抵抗多种耐药性病原体。

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