rhizobitoxine has been researched along with ethylene* in 2 studies
1 review(s) available for rhizobitoxine and ethylene
Article | Year |
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Strategies used by rhizobia to lower plant ethylene levels and increase nodulation.
Agriculture depends heavily on biologically fixed nitrogen from the symbiotic association between rhizobia and plants. Molecular nitrogen is fixed by differentiated forms of rhizobia in nodules located on plant roots. The phytohormone, ethylene, acts as a negative factor in the nodulation process. Recent discoveries suggest several strategies used by rhizobia to reduce the amount of ethylene synthesized by their legume symbionts, decreasing the negative effect of ethylene on nodulation. At least one strain of rhizobia produces rhizobitoxine, an inhibitor of ethylene synthesis. Active 1-aminocyclopropane-1-carboxylate (ACC) deaminase has been detected in a number of other rhizobial strains. This enzyme catalyzes the cleavage of ACC to alpha-ketobutyrate and ammonia. It has been shown that the inhibitory effect of ethylene on plant root elongation can be reduced by the activity of ACC deaminase. Topics: Carbon-Carbon Lyases; Ethylenes; Nitrogen Fixation; Plant Roots; Propanolamines; Rhizobiaceae; Symbiosis | 2002 |
1 other study(ies) available for rhizobitoxine and ethylene
Article | Year |
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Rhizobitoxine production by Bradyrhizobium elkanii enhances nodulation and competitiveness on Macroptilium atropurpureum.
Application of 1-aminoocyclopropane-1-carboxylic acid, an ethylene precursor, decreased nodulation of Macroptilium atropurpureum by Bradyrhizobium elkanii. B. elkanii produces rhizobitoxine, an ethylene synthesis inhibitor. Elimination of rhizobitoxine production in B. elkanii increased ethylene evolution and decreased nodulation and competitiveness on M. atropurpureum. These results suggest that rhizobitoxine enhances nodulation and competitiveness of B. elkanii on M. atropurpureum. Topics: Amino Acids; Amino Acids, Cyclic; Bradyrhizobium; Ethylenes; Fabaceae; Nitrogen Fixation; Plants, Medicinal; Plasmids; Propanolamines | 2000 |