about
The Role of Silicon in Higher Plants under Salinity and Drought StressNutrient constraints on terrestrial carbon fixation: The role of nitrogen.K+ efflux and retention in response to NaCl stress do not predict salt tolerance in contrasting genotypes of rice (Oryza sativa L.).Nitrogen transformations in modern agriculture and the role of biological nitrification inhibition.How Plant Root Exudates Shape the Nitrogen Cycle.The physiology of channel-mediated K+ acquisition in roots of higher plants.Measuring fluxes of mineral nutrients and toxicants in plants with radioactive tracers.The nitrogen-potassium intersection: Membranes, metabolism, and mechanism.Silver ions disrupt K⁺ homeostasis and cellular integrity in intact barley (Hordeum vulgare L.) roots.Complexity of potassium acquisition: how much flows through channels?Rapid ammonia gas transport accounts for futile transmembrane cycling under NH3/NH4+ toxicity in plant roots.Membrane fluxes, bypass flows, and sodium stress in rice: the influence of silicon.The controversies of silicon's role in plant biologyHow high do ion fluxes go? A re-evaluation of the two-mechanism model of K(+) transport in plant rootsIn defence of the selective transport and role of silicon in plantsPlasma-membrane electrical responses to salt and osmotic gradients contradict radiotracer kinetics, and reveal Na+-transport dynamics in rice (Oryza sativa L.).
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description
onderzoeker
@nl
researcher ORCID ID = 0000-0001-9598-2227
@en
name
Devrim Coskun
@ast
Devrim Coskun
@en
Devrim Coskun
@es
Devrim Coskun
@nl
type
label
Devrim Coskun
@ast
Devrim Coskun
@en
Devrim Coskun
@es
Devrim Coskun
@nl
prefLabel
Devrim Coskun
@ast
Devrim Coskun
@en
Devrim Coskun
@es
Devrim Coskun
@nl
P106
P1153
36175492300
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P496
0000-0001-9598-2227