The growth of plant organs is influenced by a stream of the phytohormone auxin that flows from the shoot apex to the tip of the root. However, until now it has not been known how auxin regulates the cell proliferation and enlargement that characterizes organ growth. Here we show that auxin controls the growth of roots by modulating cellular responses to the phytohormone gibberellin (GA). GA promotes the growth of plants by opposing the effects of nuclear DELLA protein growth repressors, one of which is Arabidopsis RGA (for repressor of gal-3). GA opposes the action of several DELLA proteins by destabilizing them, reducing both the concentration of detectable DELLA proteins and their growth-restraining effects. We also show that auxin is nec...
The growth of Arabidopsis thaliana is quantitatively regulated by the phytohormone gibberellin (GA) ...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...
Plant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA) regula...
SummaryPlant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA)...
Plant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA) regula...
SummaryPlant growth involves the integration of many environmental and endogenous signals that toget...
Phytohormones regulate plant development via a poorly understood signal response network. Here, we s...
Phytohormones regulate plant development via a poorly understood signal response network. Here, we s...
Plant growth involves the integration of many environmental and endogenous signals that together wit...
Gibberellins ( Gas) are key regulators of plant growth and development. they promote growth by targe...
Gibberellins ( Gas) are key regulators of plant growth and development. they promote growth by targe...
SummaryPlant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA)...
An increased understanding in recent years of the biosynthesis and signal transduction pathways for ...
An increased understanding in recent years of the biosynthesis and signal transduction pathways for ...
The growth of Arabidopsis thaliana is quantitatively regulated by the phytohormone gibberellin (GA) ...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...
Plant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA) regula...
SummaryPlant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA)...
Plant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA) regula...
SummaryPlant growth involves the integration of many environmental and endogenous signals that toget...
Phytohormones regulate plant development via a poorly understood signal response network. Here, we s...
Phytohormones regulate plant development via a poorly understood signal response network. Here, we s...
Plant growth involves the integration of many environmental and endogenous signals that together wit...
Gibberellins ( Gas) are key regulators of plant growth and development. they promote growth by targe...
Gibberellins ( Gas) are key regulators of plant growth and development. they promote growth by targe...
SummaryPlant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA)...
An increased understanding in recent years of the biosynthesis and signal transduction pathways for ...
An increased understanding in recent years of the biosynthesis and signal transduction pathways for ...
The growth of Arabidopsis thaliana is quantitatively regulated by the phytohormone gibberellin (GA) ...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA sign...