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Carbon:phosphorus homeostasis of aquatic bacterial assemblages is mediated by shifts in assemblage composition
Casey M. Godwin,
James B. Cotner
Ecology, Evolution and Behavior
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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Dive into the research topics of 'Carbon:phosphorus homeostasis of aquatic bacterial assemblages is mediated by shifts in assemblage composition'. Together they form a unique fingerprint.
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Keyphrases
Phosphorus Homeostasis
100%
P Ratio
100%
Assemblage Composition
100%
Bacterial Assemblages
100%
Homeostasis
40%
Regulation Strategy
40%
Minnesota
20%
Phosphorus P
20%
Phosphorus Availability
20%
Divergence
20%
In Situ
20%
Bacterial Community
20%
Bacterial Strains
20%
Low-resource
20%
Heterotrophic Bacteria
20%
Carbon C
20%
Bacterial Population
20%
P Availability
20%
Bacterial Biomass
20%
Biomass Carbon
20%
Chemostat
20%
Chemostat Culture
20%
Highly Flexible
20%
Axenic
20%
Species Sorting
20%
Ecological Selection
20%
Lake Trophic State
20%
Stoichiometric Homeostasis
20%
In(III)
20%
Immunology and Microbiology
Homeostasis
100%
Chemostat
50%
Axenic
25%
Bacterial Strain
25%