Within legume root nodules, rhizobia differentiate into bacteroids that oxidise host-derived dicarboxylic acids, which is assumed to occur via the TCA-cycle to generate NAD(P)H for reduction of N2. Metabolic flux analysis of laboratory grown Rhizobium leguminosarum showed that the flux from 13C-succinate was consistent with respiration of an obligate aerobe growing on a TCA-cycle intermediate as the sole carbon source. However, the instability of fragile pea bacteroids prevented their steady state labelling under N2-fixing conditons. Therefore, comparitive metabolomic profiling was used to compare free-living R. leguminosarum with pea bacteroids. While the TCA-cycle was shown to be essential for maximal rates of N2-fixation, pyruvate (5.5-f...
Nitrogen fixation in legume bacteroids is energized by the metabolism of dicarboxylic acids, which r...
Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (...
Bacteria have evolved a wide variety of metabolic strategies to cope with varied environments. Some ...
Within legume root nodules, rhizobia differentiate into bacteroids that oxidise host-derived dicarbo...
Nitrogen fixation within legume nodules results from a complex metabolic exchange between bacteria o...
Biological dinitrogen fixation by Rhizobium spp. in the root nodules of leguminous plants such as so...
Rhizobia induce nodule formation on legume roots and differentiate into bacteroids, which catabolize...
The reduction of atmospheric nitrogen (N2) to ammonia (N2 fixation) by bacteria (rhizobia) living sy...
The biological reduction of atmospheric N2 to ammonium (nitrogen fixation) provides about 65% of the...
The biological reduction of atmospheric N-2 to ammonium (nitrogen fixation) provides about 65% of th...
Symbiotic nitrogen fixation in rhizobial-legume symbioses is important for agriculture and the estab...
Biological nitrogen fixation is vital to nutrient cycling in the biosphere and is the major route by...
Biological nitrogen fixation is vital to nutrient cycling in the biosphere and is the major route by...
In this thesis the metabolic flow of carbon and electrons enabling N2 fixation in the agriculturally...
Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (...
Nitrogen fixation in legume bacteroids is energized by the metabolism of dicarboxylic acids, which r...
Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (...
Bacteria have evolved a wide variety of metabolic strategies to cope with varied environments. Some ...
Within legume root nodules, rhizobia differentiate into bacteroids that oxidise host-derived dicarbo...
Nitrogen fixation within legume nodules results from a complex metabolic exchange between bacteria o...
Biological dinitrogen fixation by Rhizobium spp. in the root nodules of leguminous plants such as so...
Rhizobia induce nodule formation on legume roots and differentiate into bacteroids, which catabolize...
The reduction of atmospheric nitrogen (N2) to ammonia (N2 fixation) by bacteria (rhizobia) living sy...
The biological reduction of atmospheric N2 to ammonium (nitrogen fixation) provides about 65% of the...
The biological reduction of atmospheric N-2 to ammonium (nitrogen fixation) provides about 65% of th...
Symbiotic nitrogen fixation in rhizobial-legume symbioses is important for agriculture and the estab...
Biological nitrogen fixation is vital to nutrient cycling in the biosphere and is the major route by...
Biological nitrogen fixation is vital to nutrient cycling in the biosphere and is the major route by...
In this thesis the metabolic flow of carbon and electrons enabling N2 fixation in the agriculturally...
Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (...
Nitrogen fixation in legume bacteroids is energized by the metabolism of dicarboxylic acids, which r...
Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (...
Bacteria have evolved a wide variety of metabolic strategies to cope with varied environments. Some ...