A mathematical model for growth and osmoregulation in halophilic bacteria.
about
Thermodynamic limits to microbial life at high salt concentrations.Glass-forming property of hydroxyectoine is the cause of its superior function as a desiccation protectant.Natural and engineered hydroxyectoine production based on the Pseudomonas stutzeri ectABCD-ask gene cluster.The hydroxyectoine gene cluster of the non-halophilic acidophile Acidiphilium cryptum.Unexpected property of ectoine synthase and its application for synthesis of the engineered compatible solute ADPC.Engineering the Salt-Inducible Ectoine Promoter Region of Halomonas elongata for Protein Expression in a Unique Stabilizing Environment.Role of the Extremolytes Ectoine and Hydroxyectoine as Stress Protectants and Nutrients: Genetics, Phylogenomics, Biochemistry, and Structural Analysis.Dynamic interactions of ecohydrological and biogeochemical processes in water-limited systems
P2860
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P2860
A mathematical model for growth and osmoregulation in halophilic bacteria.
description
2008 nî lūn-bûn
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2008年の論文
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2008年学术文章
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2008年学术文章
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2008年学术文章
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2008年学术文章
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2008年学术文章
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2008年學術文章
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name
A mathematical model for growth and osmoregulation in halophilic bacteria.
@en
A mathematical model for growth and osmoregulation in halophilic bacteria.
@nl
type
label
A mathematical model for growth and osmoregulation in halophilic bacteria.
@en
A mathematical model for growth and osmoregulation in halophilic bacteria.
@nl
prefLabel
A mathematical model for growth and osmoregulation in halophilic bacteria.
@en
A mathematical model for growth and osmoregulation in halophilic bacteria.
@nl
P2093
P356
P1433
P1476
A mathematical model for growth and osmoregulation in halophilic bacteria.
@en
P2093
Erwin A Galinski
Jörg Severin
Wolfgang Alt
P304
P356
10.1099/MIC.0.2007/012237-0
P577
2008-10-01T00:00:00Z