AbstractFormation of biofilm under varying stress conditions is a significant strategy adopted by bacterial strains for their successful survival in plant rhizosphere. In this study, the activity of biofilm formation of 20 isolates and strains of plant growth promoting rhizobacteria (PGPR) was determined under different salt concentrations. The results indicated that all of the 20 PGPRs have the activity of biofilm formation under 0.0, 250, 500 or 1000mM NaCl which was increased with increasing salt concentration. PGPR strains with the highest activity of biofilm formation were selected and used to coat barley grains. The coated grains were sown in clay/sandy soil and left to grow for 25 days. The results showed that bacterial inoculation w...
Soil salinity causes huge negative impacts on the global agricultural sector and is currently a cruc...
Salinity is one of the main causes of abiotic stress in plants, resulting in negative effects on cro...
Out of a large number of bacteria isolated from the rhizosphere of Cynodon dactylon, a facultative h...
AbstractFormation of biofilm under varying stress conditions is a significant strategy adopted by ba...
The tolerant bacteria for abiotic stresses such salinity, drought, and different pH have been used a...
The use of microbial technology in agriculture extends currently relatively quickly with the identif...
Biofilm-producing rhizobacteria (BPR) enhance productivity and mitigate abiotic stresses in plants. ...
An underutilized experimental design was employed to isolate adapted mutants of the model bacterium ...
Halotolerant plant growthpromoting rhizobacteria (PGPR) have the inherent potential to cope up with ...
Plant growth-promoting rhizobacteria containing 1-aminocyclopropane-1-carboxylate (ACC) deaminase en...
Salinity stress is an important challenge for wheat production in the world. Plant growth promoting ...
© 2019, The Author(s). Plant growth-promoting bacteria (PGPB) are known to increase plant tolerance ...
Salinity is one of the most important abiotic stresses that influences plant growth and productivity...
Plant growth promoting rhizobacteria are beneficial microbes able to induce plant stress tolerance a...
Salinity is one of the most serious problems causing desertification of agricultural lands and decre...
Soil salinity causes huge negative impacts on the global agricultural sector and is currently a cruc...
Salinity is one of the main causes of abiotic stress in plants, resulting in negative effects on cro...
Out of a large number of bacteria isolated from the rhizosphere of Cynodon dactylon, a facultative h...
AbstractFormation of biofilm under varying stress conditions is a significant strategy adopted by ba...
The tolerant bacteria for abiotic stresses such salinity, drought, and different pH have been used a...
The use of microbial technology in agriculture extends currently relatively quickly with the identif...
Biofilm-producing rhizobacteria (BPR) enhance productivity and mitigate abiotic stresses in plants. ...
An underutilized experimental design was employed to isolate adapted mutants of the model bacterium ...
Halotolerant plant growthpromoting rhizobacteria (PGPR) have the inherent potential to cope up with ...
Plant growth-promoting rhizobacteria containing 1-aminocyclopropane-1-carboxylate (ACC) deaminase en...
Salinity stress is an important challenge for wheat production in the world. Plant growth promoting ...
© 2019, The Author(s). Plant growth-promoting bacteria (PGPB) are known to increase plant tolerance ...
Salinity is one of the most important abiotic stresses that influences plant growth and productivity...
Plant growth promoting rhizobacteria are beneficial microbes able to induce plant stress tolerance a...
Salinity is one of the most serious problems causing desertification of agricultural lands and decre...
Soil salinity causes huge negative impacts on the global agricultural sector and is currently a cruc...
Salinity is one of the main causes of abiotic stress in plants, resulting in negative effects on cro...
Out of a large number of bacteria isolated from the rhizosphere of Cynodon dactylon, a facultative h...