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Studies on antagonistic effect of streptomyces species collected from polluted and non polluted environment

机译:污染和非污染环境下链霉菌种的拮抗作用研究

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Actinomycetes were widely distributed in soil are the source of antibiotics. Antibiotic resistant pathogens pose an enormous threat to the treatment of wide range of serious infections. To overcome this emergence, a periodic replacement of the new and existing antibiotic is necessary, simultaneously doses also increasing day by day for the patients, which is carcinogen to the body. The pure form and amount of antibiotics gets saturated because of genetic modified species. The environment plays an important role in the activities of living beings including microorganisms. Our present study compares the bioactive compounds extracted from Actinomycetes from various polluted and non polluted area. Attempts were made to optimize the culture conditions for the production of antimicrobial metabolite by this strain. Antimicrobial metabolite production was started after twenty days of incubation. The extract of metabolite was obtained by solvent extraction method using ethylacetate and chloroform as solvent. The ethyl acetate and chloroform extract from the non polluted area exhibited reasonable antibacterial activities against a series of gram positive and gram negative bacteria where as for the polluted area the activity was comparatively less. In the disc diffusion method the crude ethylacetate and chloroform extract from the non polluted area showed a minimum of 9 mm inhibition against Staphylococcus aureus and maximum of 13 mm of inhibition against Proteus vulgaris. The crude pigment was partially purified using Thin Layer Chromatography with the solvent system Chloroform: Methanol (30∶70) and the organism collected from non polluted area has pure compounds than the polluted area. Actinomycetes form the non polluted area may offer the potential to understand and develop treatment for disease based on the normal physiological role of their secondary metabolites.
机译:放线菌广泛分布在土壤中是抗生素的来源。抗生素抗性病原体对多种严重感染的治疗构成巨大威胁。为了克服这种情况,有必要定期更换新的和现有的抗生素,同时对患者来说剂量也日益增加,这是对人体致癌的原因。由于遗传修饰的物种,抗生素的纯净形式和数量已饱和。环境在包括微生物在内的生物活动中起着重要作用。我们目前的研究比较了从各种污染和非污染地区的放线菌提取的生物活性化合物。尝试优化了该菌株生产抗菌代谢物的培养条件。温育二十天后开始生产抗菌代谢物。通过溶剂萃取法,以乙酸乙酯和氯仿为溶剂,得到代谢物的提取物。来自非污染区的乙酸乙酯和氯仿提取物对一系列革兰氏阳性和革兰氏阴性细菌表现出合理的抗菌活性,其中对于污染区而言,活性相对较低。在圆盘扩散法中,来自无污染区的粗乙酸乙酯和氯仿提取物对金黄色葡萄球菌的抑制作用最小为9毫米,对寻常变形杆菌的抑制作用最大为13毫米。使用溶剂系统氯仿:甲醇(30∶70)的薄层色谱法将粗颜料部分纯化,从未污染区域收集的生物比污染区域具有纯净的化合物。基于其次生代谢产物的正常生理作用,形成无污染区域的放线菌可能提供理解和发展疾病治疗的潜力。

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