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Transcriptome profiles of Quercus rubra responding to increased O
3
stress
Nourolah Soltani
, Teo Best
, Dantria Grace
, Christen Nelms
, Ketia Shumaker
, Jeanne Romero-Severson
, Daniela Moses
, Stephan Schuster
, Margaret Staton
, John Carlson
, Kimberly Gwinn
Ecosystem Science and Management
Huck Institutes of the Life Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
14
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Scopus citations
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3
stress'. Together they form a unique fingerprint.
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Keyphrases
Quercus Rubra
100%
Abiotic Stress
100%
Transcriptome Profile
100%
O3 Stress
100%
Gene Expression
50%
Lipids
50%
Sequence Reads
50%
Sunlight
50%
Northern Red Oak
50%
Carbohydrate Metabolism
50%
Increased Temperature
50%
Climate Change
50%
Limited Information
50%
Molecular Oxygen
50%
Defense Response
50%
Gene Set Enrichment Analysis
50%
Nitrogen Oxides
50%
Gene Expression Profiling
50%
Gene Ontology
50%
Volatile Organic Compounds
50%
RNA Sequencing (RNA-seq)
50%
Eastern North America
50%
Automobile Emissions
50%
Biological Pathways
50%
Forest Health
50%
Terpenoid Biosynthesis
50%
Secondary Metabolism
50%
De-novo Assembly
50%
Primary Metabolism
50%
Industrial Emissions
50%
Amino Acid Metabolism
50%
Health Change
50%
Unigenes
50%
Productivity Loss
50%
Genomic Response
50%
Terpenoid Metabolism
50%
Reference Transcriptome
50%
Forest Productivity
50%
Genome Enrichment
50%
Forest Climate
50%
Plant-pathogen Interaction
50%
Enrichment Analysis
50%
Kyoto Encyclopedia of Genes
50%
Agricultural and Biological Sciences
Quercus Rubra
100%
Transcriptome
100%
Gene Expression
66%
Nitrogen Oxide
33%
Biotic Stress
33%
Climate Change
33%
Volatile Organic Compound
33%
Forest Health
33%
Unigenes
33%
Secondary Metabolism
33%
Plant Diseases
33%
Topology
33%
Biochemistry, Genetics and Molecular Biology
Transcriptome
100%
Amino Acids
33%
Lipid
33%
Gene Expression
33%
RNA Sequence
33%
Anabolism
33%
Metabolic Pathway
33%
Gene Expression Profiling
33%
Gene Ontology
33%
Defense Response
33%
Secondary Metabolism
33%
Plant Pathogen Interaction
33%
Genomics
33%
Immunology and Microbiology
Transcriptome
100%
Quercus rubra
100%
Gene Expression
33%
Gene Ontology
33%
RNA Sequence
33%
Plant Pathogen Interaction
33%
Gene Expression Assay
33%
Amino Acid
33%
Secondary Metabolism
33%