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Bacterial-mediated drought tolerance: Current and future prospects
Esther Ngumbi
, Joseph Kloepper
Research output
:
Contribution to journal
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Review article
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peer-review
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Dive into the research topics of 'Bacterial-mediated drought tolerance: Current and future prospects'. Together they form a unique fingerprint.
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Keyphrases
Drought Tolerance
100%
Abiotic Stress
100%
Drought
66%
Drought Stress
66%
Plant Growth-promoting Rhizobacteria
66%
Photosynthesis
33%
Microbial Community
33%
Glycine Max
33%
Cotton
33%
Climate Change
33%
Screening Protocol
33%
Physiological Characteristics
33%
Zea Mays
33%
Crop System
33%
Water Restriction
33%
Agricultural Crops
33%
Stress Resistance
33%
Tolerance to Drought
33%
Plant Tolerance
33%
Crop Plants
33%
Relative Water Content
33%
Crop Productivity
33%
Plant-associated
33%
Food Demand
33%
Bacteria Growth
33%
Producing Area
33%
Gossypium Hirsutum
33%
Mycorrhizal Fungi
33%
Nitrogen-fixing Bacteria
33%
Water Resources Availability
33%
Root Microbiome
33%
Nitrogen-fixing Plant
33%
Immunology and Microbiology
Drought Tolerance
100%
Rhizobium
66%
Plant Growth
66%
Photosynthesis
33%
Metabolite
33%
Bacterial Growth
33%
Zea
33%
Mycorrhiza
33%
Gossypium hirsutum
33%
Nitrogen-Fixing Bacterium
33%
Water Content
33%
Agricultural and Biological Sciences
Drought Tolerance
100%
Plant Growth-Promoting Rhizobacteria
66%
Photosystem
33%
Climate Change
33%
Metabolite
33%
Microbial Community
33%
Gossypium hirsutum
33%
Nitrogen-Fixing Bacterium
33%
Colonizing Ability
33%
Water Resource
33%
Mycorrhiza
33%