Physiologic Versatility and Growth Flexibility as the Main Characteristics of a Novel Thermoacidophilic Acidianus Strain Isolated from Copahue Geothermal Area in Argentina

被引:0
作者
M. Alejandra Giaveno
M. Sofía Urbieta
J. Ricardo Ulloa
Elena González Toril
Edgardo R. Donati
机构
[1] Universidad Nacional del Comahue,IDEPA (CCT Comahue
[2] Universidad Nacional de La Plata,CONICET–UNCo), Dpto. Química, Facultad de Ingeniería
[3] Centro de Astrobiología,CINDEFI (CCT La Plata
[4] Instituto Nacional de Técnica Aeroespacial,CONICET, UNLP), Facultad de Ciencias Exactas
来源
Microbial Ecology | 2013年 / 65卷
关键词
Molybdenite; Tetrathionate; Autotrophic Condition; Acidianus; Strain ALE1;
D O I
暂无
中图分类号
学科分类号
摘要
A novel thermoacidophilic archaeal strain has been isolated from three geothermal acidic hot springs in Copahue, Argentina. One of the most striking characteristic of ALE1 isolate is its metabolic versatility. It grows on sulphur, tetrathionate, iron (II) and sucrose under aerobic conditions, but it can also develop under anaerobic conditions using iron (III) or sulphur as electron acceptors and sulphur or hydrogen as electron donors autotrophically. A temperature of 75 °C and a pH between 2.5 and 3.0 are strain ALE1 optimal growth conditions, but it is able to oxidise iron (II) even at pH 1.0. Cells are irregular cocci surrounded by a regularly arrayed glycoprotein layer (S-layer). Phylogenetic analysis shows that strain ALE1 belongs to the family Sulfolobaceae in the class Thermoprotei, within the phylum Crenarchaeota. Based on 16S rRNA gene sequence similarity on NCBI database, ALE1 does not have closely related relatives, neither in culture nor uncultured, which is more surprising. Its closest related species are strains of Acidianus hospitalis (91 % of sequence similarity), Acidianus infernus (90 %), Acidianus ambivalens (90 %) and Acidianus manzanensis (90 %). Its DNA base composition of 34.5 % mol C + G is higher than that reported for other Acidianus species. Considering physiological and phylogenetic characteristics of strain ALE1, we considered it to represent a novel species of the genus Acidianus (candidatus “Acidianus copahuensis”). The aim of this study is to physiologically characterise this novel archaea in order to understand its role in iron and sulphur geochemical cycles in the Copahue geothermal area and to evaluate its potential applications in bioleaching and biooxidation.
引用
收藏
页码:336 / 346
页数:10
相关论文
共 107 条
[1]  
Brock TD(1972): a new genus of sulfur oxidising bacteria living at low pH and high temperature Arch Microbiol 84 54-68
[2]  
Brock KM(2009)Acidophilic microorganisms from geothermal Copahue Volcano system. Assessment of biotechnological applications Adv Mater Res 71–73 87-91
[3]  
Belly RT(2010)First assessment of acidophilic microorganisms from geothermal Copahue–Caviahue system Hydrometallurgy 104 334-341
[4]  
Weiss RL(2009)Naturally acid Waters from Copahue volcano, Argentina Appl Geochem 24 208-220
[5]  
Chiacchiarini P(1986)Solid medium for culturing black smoker bacteria at temperatures to 120 °C Appl Environ Microbiol 51 238-243
[6]  
Lavalle L(1985)Confidence limits on phylogenies: an approach using the bootstrap Evolution 30 783-791
[7]  
Giaveno A(2000)Control estructural del volcán Copahue (38° S–71° O): implicancias tectónicas para el arco volcánico cuaternario (36–39° S) Rev Asoc Geol Argent 55 229-244
[8]  
Donati E(1996)16S rDNA-based phylogeny of the archaeal order Syst Appl Microbiol 1 1956-1960
[9]  
Chiacchiarini P(2005) and reclassification of Rev Asoc Geol Argent 60 72-87
[10]  
Lavalle L(2004) as Curr Microbiol 48 159-163