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Co-culture of a Novel Fermentative Bacterium Lucifera butyrica gen. nov. sp. nov. With the Sulfur Reducer Desulfurella amilsii for Enhanced Sulfidogenesis

机译:新型发酵细菌Lucifera butyrica gen的共培养。十一月sp。十一月。与脱硫剂密苏里氏脱硫杆菌一起增强硫的生成

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摘要

Biosulfidogenesis can be used to remediate low pH and high metal content waters such as acid mine drainage and recover the present metals. The selection of a cheap electron donor for the process is important for the economic viability. In this work we isolated a novel versatile acidotolerant fermentative bacterium (strain ALET) that is able to use a great variety of substrates including glycerol. Strain ALET is an obligate anaerobe, and cells are motile, rod-shaped, spore-forming, and stain Gram-positive. Growth occurred in a pH range from 3.5 to 7 (optimum 5.5), and temperature range from 25 to 40°C (optimum 37°C). It grows by fermentation of sugars, organic acids and glycerol. It has the ability to use thiosulfate, iron and DMSO as electron acceptors. Its genome is 4.7 Mb with 5122 protein-coding sequences, and a G+C content of 46.9 mol%. Based on 16S rRNA gene sequence analysis, the closest cultured species is Propionispora hippei (91.4% 16S rRNA gene identity) from the Sporomusaceae family (Selenomonadales order, Negativicutes class, Firmicutes phylum). Based on the distinctive physiological and phylogenetic characteristics of strain ALET, a new genus and species Lucifera butyrica gen. nov., sp. nov., is proposed. The type strain is ALET (=JCM 19373T = DSM 27520T). Strain ALET is an incomplete oxidizer and acetate, among other products, accumulates during glycerol conversion. Strain ALET was used to extend the substrate range for sulfur reduction by constructing co-cultures with the acetate oxidizer and sulfur reducer Desulfurella amilsii. The co-culture was tested with glycerol as substrate in batch and chemostat experiments. Acetate formed by fermentation of glycerol by strain ALET resulted in sulfur reduction by D. amilsii. The co-culture strategy offers good perspectives to use a wide range of cost-efficient substrates, including glycerol, to produce sulfide by specialized sulfur reducers. The recovery of heavy metals from metalliferous streams may become economically feasible by this approach.>Note: The locus tag for the genes encoded in Lucifera butyrica is LUCI_. To avoid repetition of the prefix along the text, the locus tags are represented by the specific identifier.
机译:生物硫化作用可用于补救低pH值和高金属含量的水,例如酸性矿井排水,并回收现有金属。为该方法选择便宜的电子供体对于经济可行性很重要。在这项工作中,我们分离出了一种新型的多功能耐酸发酵细菌(菌株ALE T ),该细菌能够使用多种底物,包括甘油。株ALE T 是专性厌氧菌,细胞运动,杆状,孢子形成和染色革兰氏阳性。生长在pH范围3.5至7(最佳5.5)和温度范围25至40°C(最佳37°C)下发生。它通过糖,有机酸和甘油的发酵而生长。它具有使用硫代硫酸盐,铁和DMSO作为电子受体的能力。它的基因组为4.7 Mb,具有5122个蛋白质编码序列,G + C含量为46.9 mol%。根据16S rRNA基因序列分析,最接近的培养物种是来自孢菌科(Selenomonadales等级,Negativicutes类,Firmicutes phylum)的Propionispora hippei(91.4%16S rRNA基因同一性)。基于ALE T 菌株的独特生理和系统发育特性,该菌株是一新属和种Lucifera butyrica。十一月,sp。建议。类型株系为ALE T (= JCM 19373 T = DSM 27520 T )。 ALE T 菌株是不完全的氧化剂,乙酸盐以及其他产物会在甘油转化过程中积聚。 ALE T 菌株通过与乙酸盐氧化剂和脱硫剂阿米德氏脱硫菌共培养构建用于减少硫的底物范围。分批和恒化实验以甘油为底物测试共培养物。 ALE T 菌株通过甘油发酵而形成的乙酸盐可导致D. amilsii还原硫。共培养策略提供了良好的前景,可以使用各种成本有效的底物(包括甘油)通过专门的减硫剂生产硫化物。通过这种方法,从含金属的流中回收重金属可能在经济上是可行的。>注意:丁香路西法中编码的基因的基因座标签为LUCI_ 。为了避免沿文本重复前缀,轨迹标签由特定标识符表示。

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