Currently, salinity and heat are two critical threats to crop production and food security which are being aggravated by the global climatic instability. In this scenario, it is imperative to understand plant responses to simultaneous exposure to different stressors and the cross-talk between underlying functional mechanisms. Thus, in this study, the physiological and biochemical responses of tomato plants (Solanum lycopersicum L.) to the combination of salinity (100 mM NaCl) and heat (42 °C; 4 h/day) stress were evaluated. After 21 days of co-exposure, the accumulation of Na+ in plant tissues was superior when salt-treated plants were also exposed to high temperatures compared to the individual saline treatment, leading to the depletion of...
Abiotic stressors such as drought, heat, or salinity are major causes of yield loss worldwide due to...
Soil salinity is regarded as the major factor affecting crop productivity. To evaluate the effect of...
Worldwide over 30% of irrigated and 7% of rainfed agriculture has been limited by salinity stress. T...
Currently, salinity and heat are two critical threats to crop production and food security which are...
In the face of ongoing and projected climate change, including longer and more severe heat waves, lo...
Plants are continuously faced with abiotic stresses, which limit their growth and production. An und...
In the last decade contradictory results have been published as to whether exogenous salicylic acid ...
AbstractSalinity is responsible for important yield losses in crops, among them tomato (Solanum lyco...
Tomato seedling was treated under different concentration of NaCl ranged from 0 to 300 mM. Effects o...
High soil salinity affects agricultural production in many parts of the world with a third of all ir...
The effect of saline stress (NaCl, 40, 80 and 160 mmol L-1 of NaCl) on growth, plant water status an...
Abiotic stressors such as drought, heat, or salinity are major causes of yield loss worldwide due to...
Long-term incubation of tomato plants in low concentration of salicylic acid enabled plants to toler...
Salinity level is a significant limitation in abiotic factors that limits the growth, physiology and...
We aimed to examine the response of three tomato introgression lines (IL925.3, IL925.5 and IL925.6) ...
Abiotic stressors such as drought, heat, or salinity are major causes of yield loss worldwide due to...
Soil salinity is regarded as the major factor affecting crop productivity. To evaluate the effect of...
Worldwide over 30% of irrigated and 7% of rainfed agriculture has been limited by salinity stress. T...
Currently, salinity and heat are two critical threats to crop production and food security which are...
In the face of ongoing and projected climate change, including longer and more severe heat waves, lo...
Plants are continuously faced with abiotic stresses, which limit their growth and production. An und...
In the last decade contradictory results have been published as to whether exogenous salicylic acid ...
AbstractSalinity is responsible for important yield losses in crops, among them tomato (Solanum lyco...
Tomato seedling was treated under different concentration of NaCl ranged from 0 to 300 mM. Effects o...
High soil salinity affects agricultural production in many parts of the world with a third of all ir...
The effect of saline stress (NaCl, 40, 80 and 160 mmol L-1 of NaCl) on growth, plant water status an...
Abiotic stressors such as drought, heat, or salinity are major causes of yield loss worldwide due to...
Long-term incubation of tomato plants in low concentration of salicylic acid enabled plants to toler...
Salinity level is a significant limitation in abiotic factors that limits the growth, physiology and...
We aimed to examine the response of three tomato introgression lines (IL925.3, IL925.5 and IL925.6) ...
Abiotic stressors such as drought, heat, or salinity are major causes of yield loss worldwide due to...
Soil salinity is regarded as the major factor affecting crop productivity. To evaluate the effect of...
Worldwide over 30% of irrigated and 7% of rainfed agriculture has been limited by salinity stress. T...