Root excision from Triticum vulgare L. var. muticum seedlings induced a membrane potential drop, homeostasis disturbances, and loss of absorbing capacity in roots. During subsequent 3 - 4 h incubation the initial physiological properties of the roots were restored. At that period K+ absorption could be blocked by tetraethylammonium (TEA) without changing pH of the incubation medium. After 5 - 6 h of incubation the membrane hyperpolarization and the enhancement of the absorbing capacity were observed. At that period K+ influx, at presence or absence of valinomycin in incubation medium, was coupled with acidification of the external medium and was not blocked by TEA
The effects of soil humic matter on the uptake of ions by oat roots and on the (Mg2++K+) ATPase acti...
Before short-term absorption experiments, excised roots of young maize plants were differently treat...
International audiencePotassium is a major inorganic constituent of the living cell and the most abu...
Root excision from Triticum vulgare L. var. muticum seedlings induced a membrane potential drop, hom...
This paper deals with the responses of roots of wheat {Triticum aestivum L.) to hypoxia with special...
The changes in the electric potential differences between the vacuole and the external medium, induc...
Biophysical and kinetic studies on K⁺ uptake have led to the belief that uptake of this ion by plant...
AbstractPermeabilization of biological membranes by pulsed electric fields (“electroporation”) is fr...
In developing seeds of bean (Phaseolus vulgaris L.), phloem-imported assimilates (largely sucrose an...
The study of plant mineral nutrition and toxicity has made major strides recently, particularly at t...
Potassium is a major osmolyte used by plant cells. The accumulation rates of K+ in cells may limit t...
When a high-affinity K + transporter, HKT1, was cloned from the roots of K + -starved wheat and cha...
In the first stages of germination of seeds of the radish (Raphanus sativus) an outflow of K takes p...
The electrophysiology of rice (Oryza sativa cv. Calrose) roots has been investigated in both intact...
The effects of soil humic matter on the uptake of ions by oat roots and on the (Mg2++K+) ATPase acti...
The effects of soil humic matter on the uptake of ions by oat roots and on the (Mg2++K+) ATPase acti...
Before short-term absorption experiments, excised roots of young maize plants were differently treat...
International audiencePotassium is a major inorganic constituent of the living cell and the most abu...
Root excision from Triticum vulgare L. var. muticum seedlings induced a membrane potential drop, hom...
This paper deals with the responses of roots of wheat {Triticum aestivum L.) to hypoxia with special...
The changes in the electric potential differences between the vacuole and the external medium, induc...
Biophysical and kinetic studies on K⁺ uptake have led to the belief that uptake of this ion by plant...
AbstractPermeabilization of biological membranes by pulsed electric fields (“electroporation”) is fr...
In developing seeds of bean (Phaseolus vulgaris L.), phloem-imported assimilates (largely sucrose an...
The study of plant mineral nutrition and toxicity has made major strides recently, particularly at t...
Potassium is a major osmolyte used by plant cells. The accumulation rates of K+ in cells may limit t...
When a high-affinity K + transporter, HKT1, was cloned from the roots of K + -starved wheat and cha...
In the first stages of germination of seeds of the radish (Raphanus sativus) an outflow of K takes p...
The electrophysiology of rice (Oryza sativa cv. Calrose) roots has been investigated in both intact...
The effects of soil humic matter on the uptake of ions by oat roots and on the (Mg2++K+) ATPase acti...
The effects of soil humic matter on the uptake of ions by oat roots and on the (Mg2++K+) ATPase acti...
Before short-term absorption experiments, excised roots of young maize plants were differently treat...
International audiencePotassium is a major inorganic constituent of the living cell and the most abu...