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首页> 外文期刊>Korean Journal of Microbiology and Biotechnology >Analysis of Species Variety and Physiological Characteristics of Denitrifying Oligotrophic Bacteria Isolated from the Specific Environment in Korea
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Analysis of Species Variety and Physiological Characteristics of Denitrifying Oligotrophic Bacteria Isolated from the Specific Environment in Korea

机译:韩国特定环境中分离的反硝化细菌的种类多样性和生理特性分析

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摘要

In an effort to isolate novel bacteria for the bioremediation of over-fertilized soils, we identified 135 denitrifying cells out of 3,471 oligotrophic bacteria pools (3.9%) using a denitrification medium supplemented with potassium nitrate as the solenitrogen source. Soil samples were taken from ecologically well-conserved areas, including a mountain swamp around the demilitarized zone (Yongneup), two ecoparks (Upo and the Mujechi bog), and ten representative islands around the Korean peninsula (Jejudo, Daecheongdo, Socheongdo, Baekryeongdo, Ulrungdo, Dokdo, Geomundo, Hongdo, Huksando and Yeonpyeongdd). All of the 135 bacteria produced nitrogen gas from the denitrification medium, and were proved to be nitrate reductase positive by API-BioLog tests. Phylogenetic analysis using 16S rDNA sequences revealed that the 135 bacteria consisted of 44 different genera. Along with the most prominent, Proteobacteria (87.4%), we identified denitrifying bacteria from Firmicutes (9.4%), Actinobacteria (2.4%), and Bacteroidetes (0.8%). Physiological analyses of the 44 representative denitrifying bacteria, under various pH levels, growth temperatures and salt stresses, revealed 12 favorable denitrifying strains for soil bioremediation.
机译:为了分离出新型细菌,用于过度施肥的土壤的生物修复,我们使用添加了硝酸钾作为唯一氮源的反硝化培养基,从3,471个贫营养菌库中鉴定出135个反硝化细胞。土壤样品采自生态保护良好的地区,包括非军事区周围的山地沼泽(永岳),两个生态公园(Upo和Mujechi沼泽)以及朝鲜半岛周围的十个代表性岛屿(济州岛,大昌都,Soongongdo,Baekryeongdo, Ulrungdo,Dokdo,Geomundo,Hongdo,Huksando和Yeonpyeongdd)。 135个细菌全部从反硝化培养基中产生氮气,并通过API-BioLog测试证明为硝酸还原酶阳性。使用16S rDNA序列进行的系统发育分析表明,这135个细菌由44个不同属组成。与最著名的变形杆菌(87.4%)一起,我们鉴定了来自Firmicutes(9.4%),Actinobacteria(2.4%)和Bacteroidetes(0.8%)的反硝化细菌。在各种pH值,生长温度和盐胁迫下,对44种代表性反硝化细菌的生理分析表明,有12种有利的反硝化菌株可用于土壤生物修复。

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