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Diversity and physiological and biochemical properties of heterotrophic bacteria isolated from Lake Baikal neuston

机译:贝加尔湖神经元分离的异养细菌的多样性及生理生化特性

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For heterotrophic microorganisms (44 strains) isolated from the surface film of Lake Baikal, identification was carried out and their physiological and biochemical characteristics were determined. Compared to the water column, diversity of cultured heterotrophs was low, indicating formation of stable microbial communities at the air-water interface. Heterotrophic bacteria isolated from the surface microlayer exhibited the enzymatic activity comparable to that for strains from other biofilm associations. Deinococcus ficus strain NA202 was the most active component of the community, capable of utilization of the broadest spectrum of mono- and disaccharides, sugars, and amino acids. This strain possessed the highest diversity of extracellular enzymes and was the most resistant to UV radiation. The physiological and biochemical properties of this strain may be responsible for its adaptation to survival in extreme conditions of the surface microlayer. These results improve our understanding of occurrence of UV-resistant strains in freshwater ecosystems.
机译:对于从贝加尔湖表面膜分离出的异养微生物(44株),进行了鉴定并确定了它们的生理生化特性。与水柱相比,培养的异养菌的多样性较低,表明在空气-水界面处形成了稳定的微生物群落。从表面微层分离的异养细菌显示出与其他生物膜结合体菌株相当的酶活性。奇异球菌菌株NA202是社区中最活跃的组成部分,能够利用最广泛的单糖和双糖,糖和氨基酸。该菌株具有最高的细胞外酶多样性,并且对紫外线辐射最有抵抗力。该菌株的生理和生化特性可能是其适应表面微层极端条件下的存活的原因。这些结果增进了我们对淡水生态系统中抗紫外线菌株的认识。

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