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Biological stoichiometry from genes to ecosystems
J. J. Elser
, R. W. Sterner
, E. Gorokhova
, W. F. Fagan
, T. A. Markow
,
J. B. Cotner
, J. F. Harrison
,
S. E. Hobbie
, G. M. Odell
, L. W. Weider
Large Lakes Observatory
Ecology, Evolution and Behavior
Research output
:
Contribution to journal
›
Review article
›
peer-review
1385
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Scopus citations
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Keyphrases
Ribosomal DNA
100%
Biological Stoichiometry
100%
Genes-to-ecosystems
100%
Genetic Mechanism
75%
Growth Rate
50%
Ecological Dynamics
50%
Ribosomal RNA
50%
Enhanced Growth
50%
Intergenic Spacer
50%
Proton-neutron Pairing
50%
N:P Stoichiometry
50%
Ecological Stoichiometry
25%
Elemental Composition
25%
Cellular Mechanisms
25%
Energy Input
25%
Increased Yield
25%
Sexual Reproduction
25%
Growth Potential
25%
Protein Synthesis
25%
MRNA Level
25%
Copy number
25%
Life-history Traits
25%
Repeating Unit
25%
Specific Growth Rate
25%
Growth Variation
25%
High Growth Rate
25%
Nutrient Supply
25%
Evolutionary Process
25%
Transcription Rate
25%
Evolutionary Studies
25%
P-rich
25%
Growth Hypothesis
25%
RRNA Genes
25%
Ecological Interactions
25%
Fast Growth
25%
Tandem Repeats
25%
Copepods
25%
Chemical Elements
25%
Asexual Reproduction
25%
Low Biomass
25%
Input Supply
25%
Continuous Generation
25%
Multiple Chemicals
25%
Diverse Habitats
25%
Species Interactions
25%
Trait-specific
25%
Biochemistry, Genetics and Molecular Biology
Stoichiometry
100%
RNA
60%
Genetic Mechanism
60%
Intergenic Region
40%
Spacer DNA
40%
Ribosomal RNA
40%
Transcription
20%
Enhancer Region
20%
Protein Biosynthesis
20%
Tandem Repeat
20%
RNA Gene
20%
Taxon
20%
Life History Trait
20%
Copepod
20%
Asexual Reproduction
20%
Bacterium
20%
Immunology and Microbiology
Stoichiometry
100%
Ribonucleic Acid
100%
Ribosomal RNA
40%
Ribosome RNA
40%
Enhancer Region
20%
RNA Gene
20%
Taxon
20%
Life History Trait
20%
Copepod
20%
Tandem Repeat
20%
Protein Synthesis
20%
Asexual Reproduction
20%
Bacterium
20%