Salt stress limits plant growth and productivity by severely impacting the fundamental physiological processes. Silicon (Si) supplementation is considered one of the promising methods to improve plant resilience under salt stress. Here, the role of Si in modulating physiological and biochemical processes that get adversely affected by high salinity, is discussed. Although numerous reports show the beneficial effects of Si under stress, the precise molecular mechanism underlying this is not well understood. Questions like whether all plants are equally benefitted with Si supplementation despite having varying Si uptake capability and salinity tolerance are still elusive. This review illustrates the Si uptake and accumulation mechanism to und...
Silicon (Si) is an abundant and differentially distributed element in soils that is believed to have...
The present study was conducted to evaluate the effects of silicon (Si) and nano-silicon (NSi) on gr...
Exogenous applications of silicon (Si) can initiate cellular defence pathways to enhance plant resis...
Salt stress limits plant growth and productivity by severely impacting the fundamental physiological...
Salt stress limits plant growth and productivity by severely impacting the fundamental physiological...
Silicon- (Si-) induced salinity stress resistance was demonstrated at physiological and proteomic le...
Beneficial effects of silicon (Si) on growth and development have been witnessed in several plants. ...
Although deemed a "non-essential" mineral nutrient, silicon (Si) is clearly beneficial to plant grow...
Tomato plants often grow in saline environments in Mediterranean countries where salt accumulation i...
Tomato plants often grow in saline environments in Mediterranean countries where salt accumulation i...
Salt stress obstructs plant’s growth by affecting metabolic processes, ion homeostasis and over-prod...
Salinization is a main abiotic stress that affects crop growth and productivity all over the world, ...
<p>Abiotic stresses, such as salinity, heavy metals and drought, are some of the most devastating fa...
Salinity is one of the major environmental stresses that adversely affect fruit yield and quality. T...
Hundreds of single species studies have demonstrated the facility of silicon (Si) to alleviate diver...
Silicon (Si) is an abundant and differentially distributed element in soils that is believed to have...
The present study was conducted to evaluate the effects of silicon (Si) and nano-silicon (NSi) on gr...
Exogenous applications of silicon (Si) can initiate cellular defence pathways to enhance plant resis...
Salt stress limits plant growth and productivity by severely impacting the fundamental physiological...
Salt stress limits plant growth and productivity by severely impacting the fundamental physiological...
Silicon- (Si-) induced salinity stress resistance was demonstrated at physiological and proteomic le...
Beneficial effects of silicon (Si) on growth and development have been witnessed in several plants. ...
Although deemed a "non-essential" mineral nutrient, silicon (Si) is clearly beneficial to plant grow...
Tomato plants often grow in saline environments in Mediterranean countries where salt accumulation i...
Tomato plants often grow in saline environments in Mediterranean countries where salt accumulation i...
Salt stress obstructs plant’s growth by affecting metabolic processes, ion homeostasis and over-prod...
Salinization is a main abiotic stress that affects crop growth and productivity all over the world, ...
<p>Abiotic stresses, such as salinity, heavy metals and drought, are some of the most devastating fa...
Salinity is one of the major environmental stresses that adversely affect fruit yield and quality. T...
Hundreds of single species studies have demonstrated the facility of silicon (Si) to alleviate diver...
Silicon (Si) is an abundant and differentially distributed element in soils that is believed to have...
The present study was conducted to evaluate the effects of silicon (Si) and nano-silicon (NSi) on gr...
Exogenous applications of silicon (Si) can initiate cellular defence pathways to enhance plant resis...