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首页> 外文期刊>Microbial Ecology: An International Journal >Metabolic Activity and Phylogenetic Diversity of Reed (Phragmites australis) Periphyton Bacterial Communities in a Hungarian Shallow Soda Lake
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Metabolic Activity and Phylogenetic Diversity of Reed (Phragmites australis) Periphyton Bacterial Communities in a Hungarian Shallow Soda Lake

机译:匈牙利浅苏打湖中芦苇(Pragmites australis)附生细菌群落的代谢活性和系统发育多样性

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In the present study, the species composition and potential metabolic activities of bacterial communities of reed Phragmites australis (Cav.) (Trin. ex Steudel) periphyton from Lake Velencei were studied by cultivation-based and metabolic fingerprinting methods. Serially diluted spring biofilm samples were used to test the community-level physiological profiling (CLPP) using BIOLOG microplates, and for plating onto different media. On the basis of their morphological, biochemical, and physiological test results, 173 strains were clustered by numerical analysis. Representatives of amplified ribosomal DNA restriction analysis (ARDRA) groups were identified by their 16S rDNA sequence comparison. Based on the results of the CLPP investigations, regional differences were detected among the utilized substrate numbers and types, parallel with the increase in incubation time. The phenotypic test results of the strains showed considerable variability with respect to the sampling sites and the media used for cultivation. The most frequently isolated strains were identified as members of genera Agrobacterium, Pseudomonas (P. anguilliseptica, P. marginalis, P. alcaligenes, P. fragi) with aerobic or facultative anaerobic respiratory metabolism, and the species Aeromonas sobria and A. veronii with strong facultative fermentative metabolism. Other strains were identified as Gram-positive Arthrobacter, Bacillus, and Kocuria species. The rarely isolated strains were members of beta-Proteobacteria (Acidovorax, Delftia, Hydrogenophaga, and Rhodoferax), gamma-Proteobacteria (Psychrobacter and Shewanella), low G + C Gram-positives (Brevibacillus, Paenibacillus, and Exiguobacterium) and high G + C Gram-positives (Aureobacterium and Microbacterium).
机译:在本研究中,通过培养和代谢指纹图谱方法研究了韦伦西湖芦苇芦苇(Cav。)(Trin。ex Steudel)周生植物的细菌群落的种类组成和潜在的代谢活性。连续稀释的春季生物膜样品用于使用BIOLOG微孔板测试社区水平的生理谱(CLPP),并用于铺板到不同的培养基上。根据它们的形态,生化和生理学测试结果,通过数值分析将173个菌株聚类。通过他们的16S rDNA序列比较确定了扩增核糖体DNA限制分析(ARDRA)组的代表。根据CLPP调查的结果,在利用的底物数量和类型之间检测到区域差异,同时孵育时间增加。菌株的表型测试结果显示出关于采样位置和用于培养的培养基的显着差异。最常分离的菌株被鉴定为具有好氧或兼性厌氧呼吸代谢的农杆菌属,假单胞菌属(P. anguilliseptica,边际疟原虫,产碱假单胞菌,fragi属),以及具有强壮性的气单胞菌和维氏假单胞菌种。兼性发酵代谢。其他菌株被鉴定为革兰氏阳性节杆菌,芽孢杆菌和科氏菌属。极少分离出的菌株是β变形杆菌(Acidovorax,Delftia,Hydrogenophaga和Rhodoferax),γ变形杆菌(Psychrobacter和Shewanella),低G + C革兰氏阳性菌(短杆菌,Paenibacillus和Exiguobacterium)和高G + C的成员。革兰氏阳性(金黄色细菌和微细菌)。

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