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Halotolerant plant-growth promoting rhizobacteria modulate gene expression and osmolyte production to improve salinity tolerance and growth in Capsicum annum L
by
Khan, Waheed Ullah
, Yasin, Nasim Ahmad
, Ali, Aamir
, Ahmad, Sajid Rashid
, Akram, Waheed
, Ahmad, Aqeel
in
Abiotic stress
/ Aquatic Pollution
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ Bacillus - isolation & purification
/ Bacillus - physiology
/ Bacteria - metabolism
/ biochemical pathways
/ Biomass
/ biomass production
/ Biosynthesis
/ Capsicum - growth & development
/ Capsicum - metabolism
/ Capsicum - microbiology
/ Capsicum annuum
/ Chlorophyll
/ Chlorophyll - metabolism
/ Earth and Environmental Science
/ Ecotoxicology
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ ethylene
/ Ethylenes - biosynthesis
/ Flowers & plants
/ Gene expression
/ gene expression regulation
/ Gene Expression Regulation, Plant
/ genes
/ Hydrogen Peroxide - metabolism
/ Lipid peroxidation
/ Malondialdehyde - metabolism
/ Peroxidation
/ Plant Development
/ Plant growth
/ plant growth-promoting rhizobacteria
/ Plant Leaves - metabolism
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium - metabolism
/ Proline
/ Proline - metabolism
/ protein content
/ Proteins
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - physiology
/ Reactive oxygen species
/ Research Article
/ rhizosphere bacteria
/ Salinity
/ Salinity effects
/ Salinity tolerance
/ salt stress
/ Salt Tolerance
/ Sodium - metabolism
/ Sodium Chloride
/ soil
/ Soil - chemistry
/ Soil Microbiology
/ Strain
/ Stress, Physiological
/ Stresses
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Water use
/ Water use efficiency
2018
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Halotolerant plant-growth promoting rhizobacteria modulate gene expression and osmolyte production to improve salinity tolerance and growth in Capsicum annum L
by
Khan, Waheed Ullah
, Yasin, Nasim Ahmad
, Ali, Aamir
, Ahmad, Sajid Rashid
, Akram, Waheed
, Ahmad, Aqeel
in
Abiotic stress
/ Aquatic Pollution
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ Bacillus - isolation & purification
/ Bacillus - physiology
/ Bacteria - metabolism
/ biochemical pathways
/ Biomass
/ biomass production
/ Biosynthesis
/ Capsicum - growth & development
/ Capsicum - metabolism
/ Capsicum - microbiology
/ Capsicum annuum
/ Chlorophyll
/ Chlorophyll - metabolism
/ Earth and Environmental Science
/ Ecotoxicology
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ ethylene
/ Ethylenes - biosynthesis
/ Flowers & plants
/ Gene expression
/ gene expression regulation
/ Gene Expression Regulation, Plant
/ genes
/ Hydrogen Peroxide - metabolism
/ Lipid peroxidation
/ Malondialdehyde - metabolism
/ Peroxidation
/ Plant Development
/ Plant growth
/ plant growth-promoting rhizobacteria
/ Plant Leaves - metabolism
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium - metabolism
/ Proline
/ Proline - metabolism
/ protein content
/ Proteins
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - physiology
/ Reactive oxygen species
/ Research Article
/ rhizosphere bacteria
/ Salinity
/ Salinity effects
/ Salinity tolerance
/ salt stress
/ Salt Tolerance
/ Sodium - metabolism
/ Sodium Chloride
/ soil
/ Soil - chemistry
/ Soil Microbiology
/ Strain
/ Stress, Physiological
/ Stresses
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Water use
/ Water use efficiency
2018
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Halotolerant plant-growth promoting rhizobacteria modulate gene expression and osmolyte production to improve salinity tolerance and growth in Capsicum annum L
by
Khan, Waheed Ullah
, Yasin, Nasim Ahmad
, Ali, Aamir
, Ahmad, Sajid Rashid
, Akram, Waheed
, Ahmad, Aqeel
in
Abiotic stress
/ Aquatic Pollution
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ Bacillus - isolation & purification
/ Bacillus - physiology
/ Bacteria - metabolism
/ biochemical pathways
/ Biomass
/ biomass production
/ Biosynthesis
/ Capsicum - growth & development
/ Capsicum - metabolism
/ Capsicum - microbiology
/ Capsicum annuum
/ Chlorophyll
/ Chlorophyll - metabolism
/ Earth and Environmental Science
/ Ecotoxicology
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ ethylene
/ Ethylenes - biosynthesis
/ Flowers & plants
/ Gene expression
/ gene expression regulation
/ Gene Expression Regulation, Plant
/ genes
/ Hydrogen Peroxide - metabolism
/ Lipid peroxidation
/ Malondialdehyde - metabolism
/ Peroxidation
/ Plant Development
/ Plant growth
/ plant growth-promoting rhizobacteria
/ Plant Leaves - metabolism
/ Plant Roots - growth & development
/ Plant Roots - metabolism
/ Plant Roots - microbiology
/ Potassium - metabolism
/ Proline
/ Proline - metabolism
/ protein content
/ Proteins
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - physiology
/ Reactive oxygen species
/ Research Article
/ rhizosphere bacteria
/ Salinity
/ Salinity effects
/ Salinity tolerance
/ salt stress
/ Salt Tolerance
/ Sodium - metabolism
/ Sodium Chloride
/ soil
/ Soil - chemistry
/ Soil Microbiology
/ Strain
/ Stress, Physiological
/ Stresses
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Water use
/ Water use efficiency
2018
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Halotolerant plant-growth promoting rhizobacteria modulate gene expression and osmolyte production to improve salinity tolerance and growth in Capsicum annum L
Journal Article
Halotolerant plant-growth promoting rhizobacteria modulate gene expression and osmolyte production to improve salinity tolerance and growth in Capsicum annum L
2018
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Overview
Some rhizobacteria have demonstrated a noteworthy role in regulation of plant growth and biomass production under biotic and abiotic stresses. The present study was intended to explicate the ameliorative consequences of halotolerant plant growth-promoting rhizobacteria (HPGPR) on growth of capsicum plants subjected to salt stress. Salt stress was ascertained by supplementing 1 and 2 g NaCl kg
−1
soil. The HPGPR positively invigorated growth attributes, chlorophyll, protein contents, and water use efficiency (WUE) of supplemented capsicum plants under salinity stress conditions.
Bacillus fortis
strain SSB21 caused highest significant increase in shoot length, root length, and fresh and dry biomass production of capsicum plants grown under saline conditions. This multi-trait bacterium also increased biosynthesis of proline and up-regulated the expression profiles of stress related genes including CAPIP2, CaKR1, CaOSM1, and CAChi2. On the other hand,
B. fortis
strain SSB21 inoculated plants exhibited reduced level of ethylene, lipid peroxidation, and reactive oxygen species (ROS). All these together contribute to activate physiological and biochemical processes involved in the mitigation of the salinity induced stress in capsicum plants.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ Bacillus - isolation & purification
/ Biomass
/ Capsicum - growth & development
/ Earth and Environmental Science
/ ethylene
/ Gene Expression Regulation, Plant
/ genes
/ Hydrogen Peroxide - metabolism
/ Malondialdehyde - metabolism
/ plant growth-promoting rhizobacteria
/ Plant Roots - growth & development
/ Proline
/ Proteins
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - physiology
/ Salinity
/ soil
/ Strain
/ Stresses
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