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Genomic Insights Into the Lifestyles of Thaumarchaeota Inside Sponges
Markus Haber
, Ilia Burgsdorf
, Kim M. Handley
,
Maxim Rubin-Blum
,
Laura Steindler
Department of Marine Biology
Research output
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Contribution to journal
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Article
›
peer-review
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Keyphrases
Thaumarchaeota
100%
Sponge Symbionts
71%
Free-living
42%
Symbiont
42%
Sponge Associate
28%
Digestion
14%
Vitamins
14%
Rhamnose
14%
Exopolyphosphatases
14%
Evade
14%
Amino Acid Transporter
14%
Restriction-modification System
14%
Transport System
14%
Glycine Cleavage System
14%
System Modification
14%
Transposase
14%
Archaeal
14%
High Affinity
14%
Bacterial Symbionts
14%
Branched-chain Amino Acids
14%
Ammonia
14%
Specific Interactions
14%
Metazoan
14%
Toxin-antitoxin System
14%
Cell Surface
14%
Mixotrophic
14%
Immunology and Microbiology
Symbiont
100%
Thaumarchaeota
100%
Restriction Modification System
11%
Cell Surface
11%
Toxin-Antitoxin System
11%
Mixotroph
11%
Transposase
11%
Amino Acid
11%