Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
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Chemoautotrophic growth of ammonia-oxidizing Thaumarchaeota enriched from a pelagic redox gradient in the Baltic SeaNitrous oxide as a function of oxygen and archaeal gene abundance in the North Pacific.Ecological Energetic Perspectives on Responses of Nitrogen-Transforming Chemolithoautotrophic Microbiota to Changes in the Marine Environment.Pathways and key intermediates required for obligate aerobic ammonia-dependent chemolithotrophy in bacteria and ThaumarchaeotaMicrobial ecology of full-scale wastewater treatment systems in the Polar Arctic Circle: Archaea, Bacteria and Fungi.Success of chemolithoautotrophic SUP05 and Sulfurimonas GD17 cells in pelagic Baltic Sea redox zones is facilitated by their lifestyles as K- and r-strategists.The Thaumarchaeon N. gargensis carries functional bioABD genes and has a promiscuous E. coli ΔbioH-complementing esterase EstN1
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Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
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2014 nî lūn-bûn
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2014年の論文
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2014年論文
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2014年論文
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2014年論文
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2014年論文
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2014年論文
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2014年论文
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name
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@ast
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@en
type
label
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@ast
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@en
prefLabel
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@ast
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea.
@en
P2860
P356
P1433
P1476
Significance of archaeal nitrification in hypoxic waters of the Baltic Sea
@en
P2093
Klaus Jürgens
Verona Vandieken
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P2888
P304
P356
10.1038/ISMEJ.2014.218
P577
2014-11-25T00:00:00Z