Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within the plant. To investigate the regulatory mechanisms pedospheric sulfate and atmospheric H2S supply were manipulated in Brassica oleracea. Sulfate deprivation of B. oleracea seedlings induced a rapid increase of the sulfate uptake capacity by the roots, accompanied by an increased expression of genes encoding specific sulfate transporters in roots and other plant parts. More prolonged sulfate deprivation resulted in an altered shoot-root partitioning of biomass in favor of the root. B. oleracea was able to utilize atmospheric H2S as S-source; however, root proliferation and increased sulfate transporter expression occurred as in S-deficient pl...
Brassica juncea and Brassica rapa were able to utilize foliarly absorbed H2S and SO2 as sulfur sourc...
Background: Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the meta...
Both activity and expression of sulfate transporters and APS reductase in plants are modulated by th...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
The uptake and distribution of sulfate in Brassica oleracea, a species characterised by its high sul...
Sulfur is an essential nutrient for plant growth and adaptation of the plant to the environment. Gen...
The activity and expression of sulfate transporters and adenosine 5'-phosphosulfate (APS) reductase ...
Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the metabolic demand...
Brassica napus was grown under hydroponic conditions and responses to the removal of the external su...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
In order to get more insight into the interaction between atmospheric and pedospheric sulfur nutriti...
Exposure of curly kale (Brassica oleracea L.,) to gaseous H2S resulted in a decreased sulfate uptake...
Brassica juncea and Brassica rapa were able to utilize foliarly absorbed H2S and SO2 as sulfur sourc...
Background: Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the meta...
Both activity and expression of sulfate transporters and APS reductase in plants are modulated by th...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
The uptake and distribution of sulfate in Brassica oleracea, a species characterised by its high sul...
Sulfur is an essential nutrient for plant growth and adaptation of the plant to the environment. Gen...
The activity and expression of sulfate transporters and adenosine 5'-phosphosulfate (APS) reductase ...
Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the metabolic demand...
Brassica napus was grown under hydroponic conditions and responses to the removal of the external su...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
In order to get more insight into the interaction between atmospheric and pedospheric sulfur nutriti...
Exposure of curly kale (Brassica oleracea L.,) to gaseous H2S resulted in a decreased sulfate uptake...
Brassica juncea and Brassica rapa were able to utilize foliarly absorbed H2S and SO2 as sulfur sourc...
Background: Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the meta...
Both activity and expression of sulfate transporters and APS reductase in plants are modulated by th...