Brassica juncea seedlings contained a twofold higher glucosinolate content than B. rapa and these secondary sulfur compounds accounted for up to 30% of the organic sulfur fraction. The glucosinolate content was not affected by H2S and SO2 exposure, demonstrating that these sulfur compounds did not form a sink for excessive atmospheric supplied sulfur. Upon sulfate deprivation, the foliarly absorbed H2S and SO2 replaced sulfate as the sulfur source for growth of B. juncea and B. rapa seedlings. The glucosinolate content was decreased in sulfate-deprived plants, though its proportion of organic sulfur fraction was higher than that of sulfate-sufficient plants, both in absence and presence of H2S and SO2. The significance of myrosinase in the ...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
Glucosinolates (GSLs) represent one of the most widely studied classes of plant secondary metabolite...
Sulfur deficiency in plants has severe impacts on both growth and nutrient composition. Fumigation w...
Brassica juncea seedlings contained a twofold higher glucosinolate content than B. rapa and these se...
The impact of sulfate deprivation and atmospheric H2S and SO2 nutrition on the content and compositi...
Brassica juncea and Brassica rapa were able to utilize foliarly absorbed H2S and SO2 as sulfur sourc...
The impact of sulfate deprivation and atmospheric H2S and SO2 nutrition on the content and compositi...
Brassica oleracea L. was rather insensitive to atmospheric H2S: growth was only negatively affected ...
It is well established that sulfate fertilisation significantly enhances the content of mustard oil ...
Amongst other elements sulfur is present in plant tissue in minor quantities only. The predominant p...
It is well established that sulfate fertilisation significantly enhances the content of mustard oil ...
Plants in the Brassicaceae family have evolved the capacity to produce numerous unique and structura...
In order to get more insight into the interaction between atmospheric and pedospheric sulfur nutriti...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
Glucosinolates (GSLs) represent one of the most widely studied classes of plant secondary metabolite...
Sulfur deficiency in plants has severe impacts on both growth and nutrient composition. Fumigation w...
Brassica juncea seedlings contained a twofold higher glucosinolate content than B. rapa and these se...
The impact of sulfate deprivation and atmospheric H2S and SO2 nutrition on the content and compositi...
Brassica juncea and Brassica rapa were able to utilize foliarly absorbed H2S and SO2 as sulfur sourc...
The impact of sulfate deprivation and atmospheric H2S and SO2 nutrition on the content and compositi...
Brassica oleracea L. was rather insensitive to atmospheric H2S: growth was only negatively affected ...
It is well established that sulfate fertilisation significantly enhances the content of mustard oil ...
Amongst other elements sulfur is present in plant tissue in minor quantities only. The predominant p...
It is well established that sulfate fertilisation significantly enhances the content of mustard oil ...
Plants in the Brassicaceae family have evolved the capacity to produce numerous unique and structura...
In order to get more insight into the interaction between atmospheric and pedospheric sulfur nutriti...
Brassica oleracea L. is able to utilize H2S as sulfur source for growth and it can replace pedospher...
Glucosinolates (GSLs) represent one of the most widely studied classes of plant secondary metabolite...
Sulfur deficiency in plants has severe impacts on both growth and nutrient composition. Fumigation w...