Salt stress triggers a simultaneous transcriptional repression and aquaporin internalization to modify root cell water conductivity. Plasma membrane intrinsic proteins (PIPs) are involved in the adjustment of plant water balance in response to changing environmental conditions. In this study, Arabidopsis wild-type (Col-0) and transgenic lines overexpressing PIP2;7 were used to investigate and compare their response to salt stress. Hydraulic conductivity measurements using a high-pressure flowmeter (HPFM) revealed that overexpression of PIP2;7 induced a sixfold increase in root hydraulic conductivity of four week-old Arabidopsis thaliana plants compared to WT. Exposure to a high salt stress (150 mM NaCl) triggered a rapid repression of overa...
Salt stress is known to reduce root hydraulic conductivity and growth. To examine a concomitant regu...
It has long been recognized that inhibition of plant water transport by either osmotic stress or sal...
Aquaporins are protein channels that control the transport of water through cellular membranes, and ...
To gain insights into the natural variation of root hydraulics and its molecular components, genotyp...
Rapid changes in soil salinity present plants with an osmotic stress. If the concentration of salt i...
Summary Aquaporins facilitate water transport over cellular membranes and are therefore believed to ...
Plants are unavoidably subjected to various abiotic stressors, including high salinity, drought and ...
Aquaporins form a family of water and solute channel proteins and are present in most living organis...
<div><p>Background</p><p>Plants are unavoidably subjected to various abiotic stressors, including hi...
In plants so-called plasma membrane intrinsic proteins (PIPs) are major water channels governing pla...
<div><p>Drought and high salinity are environmental conditions that cause adverse effects on the gro...
Soil salinity reduces root hydraulic conductivity (L) of several plant species. However, how cellula...
Drought and high salinity are environmental conditions that cause adverse effects on the growth and ...
Soil salinity reduces the growth of glycophytic plants such as Arabidopsis thaliana and rice. In vas...
Plasma membrane intrinsic proteins (PIPs) are a subfamily of aquaporin proteins located on plasma me...
Salt stress is known to reduce root hydraulic conductivity and growth. To examine a concomitant regu...
It has long been recognized that inhibition of plant water transport by either osmotic stress or sal...
Aquaporins are protein channels that control the transport of water through cellular membranes, and ...
To gain insights into the natural variation of root hydraulics and its molecular components, genotyp...
Rapid changes in soil salinity present plants with an osmotic stress. If the concentration of salt i...
Summary Aquaporins facilitate water transport over cellular membranes and are therefore believed to ...
Plants are unavoidably subjected to various abiotic stressors, including high salinity, drought and ...
Aquaporins form a family of water and solute channel proteins and are present in most living organis...
<div><p>Background</p><p>Plants are unavoidably subjected to various abiotic stressors, including hi...
In plants so-called plasma membrane intrinsic proteins (PIPs) are major water channels governing pla...
<div><p>Drought and high salinity are environmental conditions that cause adverse effects on the gro...
Soil salinity reduces root hydraulic conductivity (L) of several plant species. However, how cellula...
Drought and high salinity are environmental conditions that cause adverse effects on the growth and ...
Soil salinity reduces the growth of glycophytic plants such as Arabidopsis thaliana and rice. In vas...
Plasma membrane intrinsic proteins (PIPs) are a subfamily of aquaporin proteins located on plasma me...
Salt stress is known to reduce root hydraulic conductivity and growth. To examine a concomitant regu...
It has long been recognized that inhibition of plant water transport by either osmotic stress or sal...
Aquaporins are protein channels that control the transport of water through cellular membranes, and ...