In order to get more insight into the interaction between atmospheric and pedospheric sulfur nutrition, the impact of H2S on sulfur metabolism was investigated in two varieties of Brassica oleracea L., viz. curly kale and Chinese cabbage. Measurements on the total sulfur content and relative growth rate of the two varieties showed that Chinese cabbage had a lower need for sulfur and correspondingly a lower sulfate uptake rate than curly kale. Both in curly kale and Chinese cabbage a large proportion of total sulfur was present as sulfate. However, the sulfate content of the roots and shoot was hardly affected at pedospheric sulfate concentration levels ranging from 0.25 up to 10 mM, reflecting a carefully regulated sulfate uptake by the roo...
The uptake of hydrogen sulfide (H2S) by shoots of curly kale (Brassica oleracea) showed saturation k...
Short-term exposure of Brassica oleracea L. (curly kale) to atmospheric H2S levels (0.2-0.8 muL .L-1...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
Exposure of curly kale (Brassica oleracea L.,) to gaseous H2S resulted in a decreased sulfate uptake...
The ability of Chinese cabbage (Brassica pekinensis) to utilize atmospheric sulfur dioxide (SO2) as ...
Brassica oleracea L. was rather insensitive to atmospheric H2S: growth was only negatively affected ...
When Brassica oleracea L. was exposed to 0.2 mul l(-1) H2S the sulfate uptake measured during a dark...
Curlykale (Brassica oleracea L., Brassicaceae) was exposed to 0 and 400 nl l(-1) H2S and simultaneou...
The activity and expression of sulfate transporters and adenosine 5'-phosphosulfate (APS) reductase ...
Curlykale (Brassica oleracea L., Brassicaceae) was exposed to 0 and 400 nl l(-1) H2S and simultaneou...
Sulfur is an essential nutrient for plant growth and adaptation of the plant to the environment. Gen...
The uptake of hydrogen sulfide (H2S) by shoots of curly kale (Brassica oleracea) showed saturation k...
Short-term exposure of Brassica oleracea L. (curly kale) to atmospheric H2S levels (0.2-0.8 muL .L-1...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
Exposure of curly kale (Brassica oleracea L.,) to gaseous H2S resulted in a decreased sulfate uptake...
The ability of Chinese cabbage (Brassica pekinensis) to utilize atmospheric sulfur dioxide (SO2) as ...
Brassica oleracea L. was rather insensitive to atmospheric H2S: growth was only negatively affected ...
When Brassica oleracea L. was exposed to 0.2 mul l(-1) H2S the sulfate uptake measured during a dark...
Curlykale (Brassica oleracea L., Brassicaceae) was exposed to 0 and 400 nl l(-1) H2S and simultaneou...
The activity and expression of sulfate transporters and adenosine 5'-phosphosulfate (APS) reductase ...
Curlykale (Brassica oleracea L., Brassicaceae) was exposed to 0 and 400 nl l(-1) H2S and simultaneou...
Sulfur is an essential nutrient for plant growth and adaptation of the plant to the environment. Gen...
The uptake of hydrogen sulfide (H2S) by shoots of curly kale (Brassica oleracea) showed saturation k...
Short-term exposure of Brassica oleracea L. (curly kale) to atmospheric H2S levels (0.2-0.8 muL .L-1...
Demand-driven signaling will contribute to regulation of sulfur acquisition and distribution within ...