Sodium fluxes in the root are critically important in salt tolerance, but new research using rice and including silicon suggests we need to revise our current understanding.Flam-Shepherd et al. (2018)provide evidence supporting the hypothesis that the extent of Na influx and cycling at the plasma membrane is far lower than previously assumed, along with significant and potentially masking apoplastic Na cycling. Silicon exerts an important effect on Na concentration in the shoot, but it appears that this is not the case in the roots. It is a paradigm shift and poses many new questions for the field.Fil: Santa Maria, Guillermo Esteban. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata...
Ponencia presentada en el Workshop on Agricultural Biotechnology, Corea 20-21 feb. (2017) organiza...
AbstractSalinity limits plant growth and impairs agricultural productivity. There is a wide spectrum...
Maintaining ion homeostasis is critical for adaptation in a NaCl stress environment. Induced activit...
Provision of silicon (Si) to roots of rice (Oryza sativa L.) can alleviate salt stress by blocking a...
Soil salinity is a major threat to global agriculture, affecting >900 million hectares of land. Sodi...
Sodium chloride reduces the growth of rice seedlings, which accumulate excessive concentrations of s...
Silicon (Si) is known to alleviate salt stress in various crops; however, the influence of Si on sod...
Plants vary in their whole plant strategies for managing the sodium (Na$\sp{+}$) present in their en...
Silicate (Si)-mediated alleviation of salinity toxicity in rice is proposed to occur through a decre...
International audienceGlobally, over one-third of irrigated land is affected by salinity, including ...
Silicon (Si) is an abundant and differentially distributed element in soils that is believed to have...
This work investigates the role of cytosolic Na⁺ exclusion in roots as a means of salinity tolerance...
Understanding the mechanisms of sodium (Na+) influx, effective compartmentalization, and efflux in h...
Na+ toxicity is one of the major physiological constraints imposed by salinity on plant performance....
Na+ toxicity is one of the major physiological constraints imposed by salinity on plant performance....
Ponencia presentada en el Workshop on Agricultural Biotechnology, Corea 20-21 feb. (2017) organiza...
AbstractSalinity limits plant growth and impairs agricultural productivity. There is a wide spectrum...
Maintaining ion homeostasis is critical for adaptation in a NaCl stress environment. Induced activit...
Provision of silicon (Si) to roots of rice (Oryza sativa L.) can alleviate salt stress by blocking a...
Soil salinity is a major threat to global agriculture, affecting >900 million hectares of land. Sodi...
Sodium chloride reduces the growth of rice seedlings, which accumulate excessive concentrations of s...
Silicon (Si) is known to alleviate salt stress in various crops; however, the influence of Si on sod...
Plants vary in their whole plant strategies for managing the sodium (Na$\sp{+}$) present in their en...
Silicate (Si)-mediated alleviation of salinity toxicity in rice is proposed to occur through a decre...
International audienceGlobally, over one-third of irrigated land is affected by salinity, including ...
Silicon (Si) is an abundant and differentially distributed element in soils that is believed to have...
This work investigates the role of cytosolic Na⁺ exclusion in roots as a means of salinity tolerance...
Understanding the mechanisms of sodium (Na+) influx, effective compartmentalization, and efflux in h...
Na+ toxicity is one of the major physiological constraints imposed by salinity on plant performance....
Na+ toxicity is one of the major physiological constraints imposed by salinity on plant performance....
Ponencia presentada en el Workshop on Agricultural Biotechnology, Corea 20-21 feb. (2017) organiza...
AbstractSalinity limits plant growth and impairs agricultural productivity. There is a wide spectrum...
Maintaining ion homeostasis is critical for adaptation in a NaCl stress environment. Induced activit...