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首页> 外文期刊>Journal of Bioscience and Bioengineering >Isolation and Characterization of Acidophilic Heterotrophic Iron-Oxidizing Bacterium from Enrichment Culture Obtained from Acid Mine Drainage Treatment Plant
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Isolation and Characterization of Acidophilic Heterotrophic Iron-Oxidizing Bacterium from Enrichment Culture Obtained from Acid Mine Drainage Treatment Plant

机译:酸性矿山排水处理厂富集培养中嗜酸性异养铁氧化菌的分离与鉴定

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An acidophilic heterotrophic bacterium,designated as HIB4,having the ability to oxidize ferrous ion was newly isolated from a sample of an enrichment culture for iron-oxidizing bacteria,using the modified washed agarose/yeast extract(WAYE)medium with ferrous sulphate.The isolate HIB4 was an acidophilic,heterotrophic,mesophilic and gram-positive bacterium.Phyloge-netically,it was classified under the genus Alicyclobacillus and was the closest to Alicyclobacillus disulfidooxidans SD-11 with 99.7% 16S rDNA homology.It grew and oxidized ferrous ion in the medium containing 0.02%(w/v)yeast extract.Yeast extract was an essential substrate for this bacterium because it could not grow or oxidize ferrous ion without yeast extract.However,a higher concentration of yeast extract inhibited the growth of HIB4,so that the optimum concentration of yeast extract for this bacterium to grow was 0.02%(w/v)at 0.08 mol/l of ferrous ion.On the other hand,ferrous ion oxidation occurred almost at the end of the bacterium's logarithmic growth phase and the isolate was able to grow without ferrous ion.These results denote that HIB4 did not obtain any energy from the ferrous ion oxidation and that HIB4 is an obligate heterotrophic and aerobic bacterium even though it oxidized ferrous ion.Also,HIB4 could not utilize any organic compounds,among the several organic chemicals used in this study,as a carbon source except yeast extract.These characteristics were completely different from these of A.disulfidooxidans SD-11 so that HIB4 might be a different species.
机译:使用改良的洗涤过的琼脂糖/酵母提取物(WAYE)培养基和硫酸亚铁,从一种铁氧化细菌富集培养物中新分离出一种具有氧化亚铁能力的嗜酸性异养细菌,它具有氧化亚铁离子的能力。 HIB4是一种嗜酸,异养,中温和革兰氏阳性细菌。从遗传学上讲,它被归类为脂环芽孢杆菌属,最接近二硫氧化脂环氧化物杆菌SD-11,具有99.7%的16S rDNA同源性。含0.02%(w / v)酵母提取物的培养基。酵母提取物是该细菌的重要底物,因为没有酵母提取物它无法生长或氧化亚铁离子。然而,较高浓度的酵母提取物会抑制HIB4的生长,因此在0.08 mol / l的亚铁离子条件下,该细菌生长的最佳酵母提取物浓度为0.02%(w / v)。细菌的对数生长期,并且分离株能够在没有亚铁离子的情况下生长。这些结果表明,HIB4不能从亚铁离子氧化中获得任何能量,即使HIB4氧化了亚铁离子也是专性的异养和好氧细菌。 HIB4不能利用本研究中使用的几种有机化合物中的任何有机化合物作为除酵母提取物之外的碳源。这些特性与双硫氧化农杆菌SD-11完全不同,因此HIB4可能是不同的物种。

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