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Root phenotypes for improved nitrogen capture
Jonathan P. Lynch
, Tania Galindo-Castañeda
, Hannah M. Schneider
, Jagdeep Singh Sidhu
, Harini Rangarajan
, Larry M. York
Plant Science
Huck Institutes of the Life Sciences
Research output
:
Contribution to journal
›
Review article
›
peer-review
73
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Scopus citations
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Keyphrases
Root Phenotyping
100%
Agroecosystem
40%
Crop Production
40%
Rhizosphere
40%
Nitrogen Availability
40%
Energy Cost
20%
Rhizosphere Microbiome
20%
Plant Tissue
20%
Phene
20%
Root Foraging
20%
Low Input
20%
Nitrate Uptake
20%
Nitrogen Fertilization
20%
Crop Improvement
20%
Intraspecific Variation
20%
Co-optimization
20%
Energy Economics
20%
Phenotypic Variation
20%
Underutilization
20%
Soil Exploration
20%
Economic Cost
20%
Molecular Phenotype
20%
Phenotypic Plasticity
20%
Environmental Cost
20%
Metabolic Cost
20%
Soil Hydrology
20%
High Input
20%
Uptake Kinetics
20%
Nitrogen Requirement
20%
Global Agriculture
20%
Nitrogen Fertilizer
20%
Breeding Strategy
20%
In Silico Modeling
20%
Cross-cutting Issues
20%
Modeling Strategy
20%
Cereal Crops
20%
High-throughput Phenotyping
20%
Hard Soil
20%
Breeding Targets
20%
Crop Germplasm
20%
Integrated Phenotype
20%
Agricultural and Biological Sciences
Rhizosphere
100%
Crop Production
66%
Agroecosystem
66%
Plant Tissue
33%
Germplasm
33%
Crop Improvement
33%
Phenotypic Variation
33%
Phenotypic Plasticity
33%
Nitrogen Fertilizer
33%
Cereal Crop
33%
Soil Hydrology
33%
Microbiome
33%
Intraspecific Variation
33%