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Specific characteristics of the strains isolated from a thermoacidophilic microbial community oxidizing antimony sulfide ore

机译:从嗜热微生物群落氧化锑锑矿分离出的菌株的特性

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Investigation of the phenotypic properties of three mixotrophic bacteria, strains Sb-K, Sb-F, and Sb-S, isolated from an aboriginal thermoacidophilic microbial community participating in biooxidation of ore with high antimony content (26%) and ore concentrates from the Olympiadinskoe deposit under semicontinuous cultivation conditions at 46 ± 1°C, revealed the differentiating characteristics of these strains. The isolated cultures grew lithotrophically through different numbers of transfers: strains Sb-F and Sb-K grew through seven and eight transfers, respectively, and strain Sb-S grew through two or three transfers. Strains Sb-K and Sb-S utilized a wide range of organic substrates for active organotrophic growth during nine or ten transfers, while strain Sb-F was less tolerant to organic compounds. Strain Sb-K grew on a medium with the ore and sulfide ore concentrates in the pH range of 1.0-3.0. Growth of strains Sb-F and Sb-S occurred in the pH ranges of 1.0-2.5 and 1.5-5.5 on media with Fe~(2+) and S~0, respectively. The optimal initial pH values of the media, corresponding to the maximum specific growth rates, were 1.6-1.7, 1.9, and 2.0-3.0 for strains Sb-K, Sb-F, and Sb-S, respectively. All three strains were able to grow within a broad temperature range, 20-65°C, with an optimum at 46°C (Sb-K), 40-46°C (Sb-F), and 48-50°C (Sb-S). According to the results of DNA-DNA hybridization and phylogenetic analysis, as well as their phenotypic characteristics, the isolates can be classified as novel strains of species of the genus Sulfobacillus. Strains Sb-K, Sb-F, and Sb-S, isolated as predominant cultures on the media with sulfide compounds, iron, or sulfur, respectively, were affiliated to the species S. thermotolerans, S. sibiricus, and S. thermosulfidooxidans.
机译:从参与嗜氧性高的矿石(26%)和奥林匹亚丁斯科的精矿的生物氧化中分离出来的三种嗜热细菌,Sb-K,Sb-F和Sb-S菌株的表型特性在46±1°C的半连续培养条件下沉积,显示了这些菌株的分化特征。分离的培养物通过不同次数的转移在岩石上生长:菌株Sb-F和Sb-K分别通过7次和8次转移而生长,菌株Sb-S通过2次或3次转移而生长。菌株Sb-K和Sb-S在九个或十个转移过程中利用了广泛的有机底物来进行活性有机营养生长,而菌株Sb-F对有机化合物的耐受性较低。 Sb-K菌株在矿石和硫化物精矿的pH范围为1.0-3.0的培养基上生长。在具有Fe〜(2+)和S〜0的培养基上,Sb-F和Sb-S菌株的生长分别在1.0-2.5和1.5-5.5的pH范围内发生。 Sb-K,Sb-F和Sb-S菌株对应于最大比生长速率的培养基的最佳初始pH值分别为1.6-1.7、1.9和2.0-3.0。所有这三种菌株都能在20-65°C的宽温度范围内生长,最适温度分别为46°C(Sb-K),40-46°C(Sb-F)和48-50°C( Sb-S)。根据DNA-DNA杂交和系统发育分析的结果,以及它们的表型特征,可以将分离物归类为硫杆菌属的新菌株。在培养基中分别以硫化物,铁或硫作为主要培养物分离出的菌株Sb-K,Sb-F和Sb-S属于嗜热链球菌,嗜热链球菌和嗜热硫氧化物亚种。

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