Control of bud activation by an auxin transport switch.
نویسندگان
چکیده
In many plant species only a small proportion of buds yield branches. Both the timing and extent of bud activation are tightly regulated to produce specific branching architectures. For example, the primary shoot apex can inhibit the activation of lateral buds. This process is termed apical dominance and is dependent on the plant hormone auxin moving down the main stem in the polar auxin transport stream. We use a computational model and mathematical analysis to show that apical dominance can be explained in terms of an auxin transport switch established by the temporal precedence between competing auxin sources. Our model suggests a mechanistic basis for the indirect action of auxin in bud inhibition and captures the effects of diverse genetic and physiological manipulations. In particular, the model explains the surprising observation that highly branched Arabidopsis phenotypes can exhibit either high or low auxin transport.
منابع مشابه
Control of Bud Activation by an Auxin Transport Switch Supporting Information
All growth conditions, and all plant lines except those involving tir3, are as described in (S1) and (S2). Note that the axr1-12 line described in (S1) was subsequently found to be axr1-3, as used in this study. The tir3-101 line was obtained from the Nottingham Arabidopsis Stock Centre. The tir3-101 max4-1 double mutant was generated by crossing the single mutants and then using the tir3 dwarf...
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One of the first and most enduring roles identified for the plant hormone auxin is the mediation of apical dominance. Many reports have claimed that reduced stem indole-3-acetic acid (IAA) levels and/or reduced basipetal IAA transport directly or indirectly initiate bud growth in decapitated plants. We have tested whether auxin inhibits the initial stage of bud release, or subsequent stages, in...
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Many processes have been described in the control of shoot branching. Apical dominance is defined as the control exerted by the shoot tip on the outgrowth of axillary buds, whereas correlative inhibition includes the suppression of growth by other growing buds or shoots. The level, signaling, and/or flow of the plant hormone auxin in stems and buds is thought to be involved in these processes. ...
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عنوان ژورنال:
- Proceedings of the National Academy of Sciences of the United States of America
دوره 106 41 شماره
صفحات -
تاریخ انتشار 2009