首页> 外文期刊>Environmental Technology >HALOPHILIC AND HALOTOLERANT BACTERIA FROM RIVER WATERS AND SHALLOW GROUNDWATER ALONG THE ROUGE RIVER OF SOUTHEASTERN MICHIGAN
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HALOPHILIC AND HALOTOLERANT BACTERIA FROM RIVER WATERS AND SHALLOW GROUNDWATER ALONG THE ROUGE RIVER OF SOUTHEASTERN MICHIGAN

机译:东南密歇根河沿岸河流和浅层地下水中的嗜盐和耐盐细菌

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The use of sodium chloride to melt highway and road snow is believed to have a significant effect on the groundwater ecosystem of the rivers where the salt from the roads drain. As the river composition changes, the bacterial population also changes to favour those bacteria that are more suited to the higher salt concentrations. In this experiment, we surveyed the cultivable salt-loving organisms (halophiles) on three sites that encompass the Rouge River (Lotz; site 1, Lilly, site; 8, and Ford Field, site 9). A total of 125 isolates were surveyed. Representative isolates of distinct morphologies were subjected to physiological test, using API strips and identified by 16 rDNA sequence analysis. The 16S rDNA sequences were analyzed and compared with sequences from Genbank. Results indicated that the SSU rRNA sequences of the bacterial isolates were similar to six major genera, Bacillus, Staphylococcus, Halobacillus, Paenabacillus, Halomonas, and Clostridium. Half of the isolates sequenced were similar to Bacillus spp. The API assay showed that the majority of the isolates were positive for the enzymes tryptophane deaminase, gelatinase and β-galactosidase. Indole production, acetoin production and citrate utilization were not observed for any isolates. Fermentation of carbohydrates was observed for very few isolates. The primary enzyme found in all isolates was arginine dihydrolase, which might be an indicator of the presence of such enzyme in halophilic and halotolerant bacteria present in the Rouge River.
机译:人们认为,使用氯化钠融化高速公路和道路积雪会对河流中的盐分流失的河流的地下水生态系统产生重大影响。随着河流组成的变化,细菌数量也会发生变化,从而偏向于那些更适合较高盐浓度的细菌。在此实验中,我们在包括Rouge河(Lotz; Lilly网站1; 8; Ford Field 9网站)的三个站点上调查了可培养的嗜盐生物(嗜盐菌)。总共调查了125株。使用API​​试纸条对不同形态的代表性分离物进行生理测试,并通过16 rDNA序列分析进行鉴定。分析了16S rDNA序列,并与Genbank的序列进行了比较。结果表明,细菌分离物的SSU rRNA序列与六个主要属相似,即芽孢杆菌,葡萄球菌,嗜盐杆菌,潘氏杆菌,嗜盐单胞菌和梭状芽胞杆菌。一半的分离株与芽孢杆菌属相似。 API分析表明,大多数分离株的色氨酸脱氨酶,明胶酶和β-半乳糖苷酶均为阳性。对于任何分离物,均未观察到吲哚生产,丙酮生成和柠檬酸盐利用。对于很少的分离物,观察到碳水化合物的发酵。在所有分离物中发现的主要酶是精氨酸二水解酶,这可能表明胭脂河中存在的嗜盐和嗜盐菌中存在这种酶。

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