Results 121 to 130 of about 1,200 (171)
Biotechnological potential of salt tolerant and xerophilic species of Aspergillus. [PDF]
Pócsi I +3 more
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Phylogenetic Relationships of Avian Cestodes from Brine Shrimp and Congruence with Larval Morphology. [PDF]
Redón S +4 more
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Novel insights into the diversity of halophilic microorganisms and their functioning in hypersaline ecosystems. [PDF]
Oren A.
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An RNA ligase partner for the prokaryotic protein-only RNase P: insights into the functional diversity of RNase P from genome mining. [PDF]
Seshadri R, Gopalan V.
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Journal of Microbiology, 2019
Salterns are hypersaline extreme environments with unique physicochemical properties such as a salinity gradient. Although the investigation of microbiota in salterns has focused on archaea and bacteria, diverse fungi also thrive in the brine and soil of salterns.
Dawoon Chung, Haryun Kim
exaly +3 more sources
Salterns are hypersaline extreme environments with unique physicochemical properties such as a salinity gradient. Although the investigation of microbiota in salterns has focused on archaea and bacteria, diverse fungi also thrive in the brine and soil of salterns.
Dawoon Chung, Haryun Kim
exaly +3 more sources
2011
Solar salterns are constructed as shallow multi-pond systems for the production of halite through evaporation of seawater. The main feature of salterns is the discontinuous salinity gradient that provides a range of well-defined habitats with increasing salinities, from moderate to hypersaline.
Janja, Zajc +3 more
openaire +2 more sources
Solar salterns are constructed as shallow multi-pond systems for the production of halite through evaporation of seawater. The main feature of salterns is the discontinuous salinity gradient that provides a range of well-defined habitats with increasing salinities, from moderate to hypersaline.
Janja, Zajc +3 more
openaire +2 more sources
2004
Salterns provide special living conditions for microorganisms. They are extreme environments because of high concentrations of NaCl and other salts, occasional rapid changes in water activity, low oxygen concentration, and high UV radiation (Brock 1979).
Nina Gunde-Cimerman +6 more
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Salterns provide special living conditions for microorganisms. They are extreme environments because of high concentrations of NaCl and other salts, occasional rapid changes in water activity, low oxygen concentration, and high UV radiation (Brock 1979).
Nina Gunde-Cimerman +6 more
openaire +1 more source
Prokaryotic diversity of a Tunisian multipond solar saltern
Extremophiles, 200816S rRNA gene clone libraries were separately constructed from three ponds with different salt concentrations, M2 (15%), TS38 (25%) and S5 (32%), located within a multipond solar saltern of Sfax. The 16S rRNA genes from 216 bacterial clones and 156 archaeal clones were sequenced and phylogenetically analyzed.
Houda, Baati +5 more
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Streptomyces boncukensis sp. nov., isolated from saltern soil
Archives of Microbiology, 2020A novel Gram-stain positive, aerobic, non-motile Actinobacterium, designated strain SB3404T, was isolated from saltern soil collected from Boncuk Saltern, Sungurlu-Çorum, Turkey, and subjected to a polyphasic taxonomic approach. The organism has shown to have phylogenetic, chemotaxonomic, cultural and morphological properties consistent with its ...
Demet Tatar +3 more
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Frequent Recombination in a Saltern Population of Halorubrum
Science, 2004Sex and recombination are driving forces in the evolution of eukaryotes. Homologous recombination is known to be the dominant process in the divergence of many bacterial species. For Archaea, the only direct evidence bearing on the importance or natural occurrence of homologous recombination is anecdotal reports of mosaicism from comparative genomic ...
R Thane, Papke +3 more
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