Salinity significantly impacts the growth, development, and reproductive biology of various crops such as vegetables. The cultivable area is reduced due to the accumulation of salts and chemicals currently in use and is not amenable to a large extent to avoid such abiotic stress factors. The addition of microbes enriches the soil without any adverse effects. The effects of microbial consortia comprising Bacillus sp., Delftia sp., Enterobacter sp., Achromobacter sp., was evaluated on the growth and mineral uptake in tomatoes (Solanum Lycopersicum L.) under salt stress and normal soil conditions. Salinity treatments comprising Ec 0, 2, 5, and 8 dS/m were established by mixing soil with seawater until the desired Ec was achieved. The seedlings...
Salinity is one of the most important abiotic stresses that influences plant growth and productivity...
Plants are often challenged by multiple abiotic stresses simultaneously. The inoculation of benefici...
Plants and their microbiomes, including plant growth-promoting bacteria (PGPB), can work as a team t...
Salinity significantly impacts the growth, development, and reproductive biology of various crops su...
Salinity significantly impacts the growth, development, and reproductive biology of various crops su...
The effectiveness of plant growth – promoting bacteria is variable under different biotic and abioti...
Less than 0.5% of total water in the world is available for human consumption and agriculture. The m...
Saline soils are a major challenge in agriculture, and salinization is increasing worldwide due to c...
Vegetable plants are more sensitive to salt stress during the early growth stages; hence, the availa...
Background: The emerging roles of rhizobacteria in improving plant nutrition and stress protection h...
Soil salinity is one of the most important abiotic stresses limiting crop growth and production worl...
Salinity is one of the main causes of abiotic stress in plants, resulting in negative effects on cro...
Soil salinity is one of the most important factors reducing agricultural productivity worldwide. Hal...
With the aim of assessing the eects of beneficial microorganisms on greenhouse tomato “plum” grown ...
Salinity is one of the most important abiotic stresses that influences plant growth and productivity...
Plants are often challenged by multiple abiotic stresses simultaneously. The inoculation of benefici...
Plants and their microbiomes, including plant growth-promoting bacteria (PGPB), can work as a team t...
Salinity significantly impacts the growth, development, and reproductive biology of various crops su...
Salinity significantly impacts the growth, development, and reproductive biology of various crops su...
The effectiveness of plant growth – promoting bacteria is variable under different biotic and abioti...
Less than 0.5% of total water in the world is available for human consumption and agriculture. The m...
Saline soils are a major challenge in agriculture, and salinization is increasing worldwide due to c...
Vegetable plants are more sensitive to salt stress during the early growth stages; hence, the availa...
Background: The emerging roles of rhizobacteria in improving plant nutrition and stress protection h...
Soil salinity is one of the most important abiotic stresses limiting crop growth and production worl...
Salinity is one of the main causes of abiotic stress in plants, resulting in negative effects on cro...
Soil salinity is one of the most important factors reducing agricultural productivity worldwide. Hal...
With the aim of assessing the eects of beneficial microorganisms on greenhouse tomato “plum” grown ...
Salinity is one of the most important abiotic stresses that influences plant growth and productivity...
Plants are often challenged by multiple abiotic stresses simultaneously. The inoculation of benefici...
Plants and their microbiomes, including plant growth-promoting bacteria (PGPB), can work as a team t...