The growth and development of rice face many issues, including its exposure to high soil salinity. This issue can be alleviated using new approaches to overwhelm the factors that restrict rice productivity. The objective of our investigation was the usage of the rhizobacteria (Pseudomonas koreensis and Bacillus coagulans) as plant growth-promoting rhizobacteria (PGPRs) and nano-silicon, which could be a positive technology to cope with the problems raised by soil salinity in addition to improvement the morpho-physiological properties, and productivity of two rice varieties (i.e., Giza 177 as salt-sensitive and Giza 179 as salt-tolerant). The findings stated that the application of combined PGPRs and nano-Si resulted in the highest soil enzy...
Salinity is one of the most damaging abiotic stresses due to climate change impacts that affect the ...
Rice production under salinity stress is a critical challenge facing many countries, particularly th...
The possible role of plant growth-promoting rhizobacteria (PGPR) to alleviate salt stress during pl...
Soil salinity causes huge negative impacts on the global agricultural sector and is currently a cruc...
Salt-tolerant plant growth-promoting rhizobacteria (PGPR) could be an alternative to alleviate salin...
To investigate the physiological basis of salt adaptation in paddy due to inoculation with plant gro...
Salinity is one of the most devastating abiotic stresses which hamper the growth and production of r...
In this study, we characterized, identified, and determined the effect of salt-tolerant PGPR isolate...
The possible role of plant growth-promoting rhizobacteria (PGPR) to alleviate salt stress during pla...
The growth and productivity of rice is negatively affected by soil salinity. However, some salt-tole...
Growth and productivity of rice are negatively affected by soil salinity. However, some salt-toleran...
Growth and productivity of rice are negatively affected by soil salinity. However, some salt-toleran...
Salinity is one of the most damaging abiotic stresses due to climate change impacts that affect the ...
Exploitation of low-quality water or irrigation of field crops with saline water in salt-affected so...
In the present study, plant growth promoting rhizobacterial (PGPR) strains Pseudomonas fluorescence ...
Salinity is one of the most damaging abiotic stresses due to climate change impacts that affect the ...
Rice production under salinity stress is a critical challenge facing many countries, particularly th...
The possible role of plant growth-promoting rhizobacteria (PGPR) to alleviate salt stress during pl...
Soil salinity causes huge negative impacts on the global agricultural sector and is currently a cruc...
Salt-tolerant plant growth-promoting rhizobacteria (PGPR) could be an alternative to alleviate salin...
To investigate the physiological basis of salt adaptation in paddy due to inoculation with plant gro...
Salinity is one of the most devastating abiotic stresses which hamper the growth and production of r...
In this study, we characterized, identified, and determined the effect of salt-tolerant PGPR isolate...
The possible role of plant growth-promoting rhizobacteria (PGPR) to alleviate salt stress during pla...
The growth and productivity of rice is negatively affected by soil salinity. However, some salt-tole...
Growth and productivity of rice are negatively affected by soil salinity. However, some salt-toleran...
Growth and productivity of rice are negatively affected by soil salinity. However, some salt-toleran...
Salinity is one of the most damaging abiotic stresses due to climate change impacts that affect the ...
Exploitation of low-quality water or irrigation of field crops with saline water in salt-affected so...
In the present study, plant growth promoting rhizobacterial (PGPR) strains Pseudomonas fluorescence ...
Salinity is one of the most damaging abiotic stresses due to climate change impacts that affect the ...
Rice production under salinity stress is a critical challenge facing many countries, particularly th...
The possible role of plant growth-promoting rhizobacteria (PGPR) to alleviate salt stress during pl...