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首页> 外文期刊>African Journal of Biotechnology >Genetic analysis of antibiotic production and other phenotypic traits from Streptomyces associated with seaweeds
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Genetic analysis of antibiotic production and other phenotypic traits from Streptomyces associated with seaweeds

机译:海藻链霉菌抗生素生产及其他表型性状的遗传分析

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The Gram-positive bacterium such as streptomycetes known for its production of a diverse array of biotechnologically important secondary metabolites, have major application in health, nutrition and economics of our society. There are limited studies on the genetics of streptomycetes, especially seaweed associated Streptomyces sp. So, the present study made an attempt to study the genetics of production of antibiotic and other phenotypic properties was demonstrated by plasmid DNA curing analysis. The DNA-intercalating agent ethidium bromide was used to eliminate plasmid DNA from streptomycetes and effects of curing agent (EB) on the antibiotic production and loss of other phenotypic traits such as aerial and substrate mycelial production, biomass production, protein synthesis were studied. The study demonstrates that the ethidium bromide is potent and probably region-specific mutagens that are capable of inducing high rates of plasmid loss (curing), production of antibiotics was not eliminated, but was reduced by 20.2-79.8% and extracellular protein of 26 KDa mol.wt. was unaffected by curing agents. Data suggests that production of antibiotics and other phenotypic traits likely chromosomally encoded in marine Streptomyces species. The study concludes that the new methodologies such as mutasynthesis have contributed substantially to the discovery of additional antibiotics as an added feather to the scope of antibiotic industry.
机译:革兰氏阳性细菌(例如链霉菌)以生产多种生物技术重要的次生代谢产物而闻名,在我们社会的健康,营养和经济方面具有重要应用。对链霉菌,尤其是与海藻有关的链霉菌sp的遗传学研究很少。因此,本研究试图研究抗生素产生的遗传学,并通过质粒DNA固化分析证明其其他表型特性。使用DNA插入剂溴化乙锭从链霉菌中去除质粒DNA,并研究了固化剂(EB)对抗生素产生和其他表型性状丧失的影响,例如气生和底物菌丝体产生,生物量产生,蛋白质合成。该研究表明,溴化乙锭是有效的,并且可能是区域特异性诱变剂,它们能够诱导高速率的质粒丢失(固化),并未消除抗生素的产生,但减少了20.2-79.8%,细胞外蛋白质为26 KDa分子量不受固化剂的影响。数据表明,在海洋链霉菌种中可能产生染色体编码的抗生素和其他表型性状。研究得出的结论是,诸如突变合成等新方法为发现其他抗生素做出了重大贡献,这为抗生素工业的发展提供了新的契机。

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