Auxin regulation of cytokinin biosynthesis in Arabidopsis thaliana : A factor of potential importance for auxin–cytokinin-regulated development
0301 basic medicine
Isopentenyladenosine
03 medical and health sciences
Cytokinins
Time Factors
Indoleacetic Acids
Mutation
Arabidopsis
Plant Components, Aerial
Plant Roots
Adenosine Monophosphate
DOI:
10.1073/pnas.0402504101
Publication Date:
2004-05-15T00:13:17Z
AUTHORS (7)
ABSTRACT
One of the most long-lived models in plant science is the belief that the long-distance transport and ratio of two plant hormones, auxin and cytokinin, at the site of action control major developmental events such as apical dominance. We have used
in vivo
deuterium labeling and mass spectrometry to investigate the dynamics of homeostatic cross talk between the two plant hormones. Interestingly, auxin mediates a very rapid negative control of the cytokinin pool by mainly suppressing the biosynthesis via the isopentenyladenosine-5′-monophosphate-independent pathway. In contrast, the effect of cytokinin overproduction on the entire auxin pool in the plant was slower, indicating that this most likely is mediated through altered development. In addition, we were able to confirm that the lateral root meristems are likely to be the main sites of isopentenyladenosine-5′-monophosphate-dependent cytokinin synthesis, and that the aerial tissue of the plant surprisingly also was a significant source of cytokinin biosynthesis. Our demonstration of shoot-localized synthesis, together with data demonstrating that auxin imposes a very rapid regulation of cytokinin biosynthesis, illustrates that the two hormones can interact also on the metabolic level in controlling plant development, and that the aerial part of the plant has the capacity to synthesize its own cytokinin independent of long-range transport from the root system.
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