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Microbial Utilization of Glycine Betain in Hypersaline Soda Lakes
Dimitry Y. Sorokin
BT/Environmental Biotechnology
Research output
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Contribution to journal
›
Article
›
Scientific
›
peer-review
5
Citations (Scopus)
Overview
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Dive into the research topics of 'Microbial Utilization of Glycine Betain in Hypersaline Soda Lakes'. Together they form a unique fingerprint.
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Immunology and Microbiology
Bacterium
100%
Genus
100%
Salinity
66%
pH
66%
Contrast
33%
Energy
33%
Archaeon
33%
Mineralization
33%
Species
33%
Halomonas
33%
RNA Gene
33%
Growth
33%
Haloarchaea
33%
Microorganism
33%
Synthesis
33%
Electron
33%
Methanogen
33%
INIS
glycine
100%
lakes
100%
sodium carbonates
100%
betaine
90%
enrichment
40%
bacteria
30%
sulfur
20%
communities
20%
ph value
20%
salinity
20%
electron acceptor
10%
carbon
10%
substrates
10%
energy
10%
siberia
10%
choline
10%
antibiotics
10%
sediments
10%
rna
10%
sarcosine
10%
growth
10%
nitrogen
10%
investigations
10%
genes
10%
synthesis
10%
habitat
10%
mineralization
10%
environment
10%
strains
10%
Keyphrases
Betalains
100%
16S RNA Gene
11%
Halophilic Microorganisms
11%
Saline Habitats
11%
Microbial Mineralization
11%
Mineralizer
11%
Dimethylglycine
11%