Nosalova Lea, Piknova Maria, Bonova Katarina, Pristas Peter
Department of Microbiology, Faculty of Science, Institute of Biology and Ecology, Pavol Jozef Safarik University in Kosice, 041 54 Kosice, Slovakia.
Faculty of Science, Institute of Geography, Pavol Jozef Safarik University in Kosice, 040 01 Kosice, Slovakia.
Microorganisms. 2022 May 9;10(5):995. doi: 10.3390/microorganisms10050995.
The sulfur cycle participates significantly in life evolution. Some facultatively autotrophic microorganisms are able to thrive in extreme environments with limited nutrient availability where they specialize in obtaining energy by oxidation of reduced sulfur compounds. In our experiments focused on the characterization of halophilic bacteria from a former salt mine in Solivar (Presov, Slovakia), a high diversity of cultivable bacteria was observed. Based on ARDRA (Amplified Ribosomal DNA Restriction Analysis), at least six groups of strains were identified with four of them showing similarity levels of 16S rRNA gene sequences lower than 98.5% when compared against the GenBank rRNA/ITS database. Heterotrophic sulfur oxidizers represented ~34% of strains and were dominated by and genera. Autotrophic sulfur oxidizers represented ~66% and were dominated by and genera. Overall, our results indicate that the spatially isolated hypersaline deep subsurface habitat in Solivar harbors novel and diverse extremophilic sulfur-oxidizing bacteria.
硫循环在生命进化过程中发挥着重要作用。一些兼性自养微生物能够在营养物质有限的极端环境中生存,它们通过氧化还原态硫化合物来获取能量。在我们旨在对来自斯洛伐克普雷绍夫索利瓦尔一处废弃盐矿的嗜盐细菌进行特性描述的实验中,观察到了可培养细菌的高度多样性。基于ARDRA(扩增核糖体DNA限制性分析),至少鉴定出了六组菌株,其中四组与GenBank rRNA/ITS数据库相比,其16S rRNA基因序列的相似性水平低于98.5%。异养硫氧化菌约占菌株总数的34%,主要为[具体属名1]和[具体属名2]属。自养硫氧化菌约占66%,主要为[具体属名3]和[具体属名4]属。总体而言,我们的结果表明,索利瓦尔空间隔离的高盐深层地下栖息地蕴藏着新型且多样的极端嗜硫氧化细菌。