SummaryPlant growth is driven by cell proliferation and elongation [1]. The hormone gibberellin (GA) regulates Arabidopsis root growth [2–5] by controlling cell elongation [6], but it is currently unknown whether GA also controls root cell proliferation. Here we show that GA biosynthetic mutants are unable to increase their cell production rate and meristem size after germination. GA signals the degradation of the DELLA growth repressor proteins [7–12] GAI and RGA, promoting root cell production. Targeting the expression of gai (a non-GA-degradable mutant form of GAI) in the root meristem disrupts cell proliferation. Moreover, expressing gai in dividing endodermal cells was sufficient to block root meristem enlargement. We report a novel fu...
The growth of plant organs is influenced by a stream of the phytohormone auxin that flows from the s...
● Root elongation depends on the action of the gibberellin (GA) growth hormones, which promote cell ...
Control over cell growth by mobile regulators underlies much of eukaryotic morphogenesis. In plant r...
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...
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...
SummaryPlant growth involves the integration of many environmental and endogenous signals that toget...
Plant growth involves the integration of many environmental and endogenous signals that together wit...
SummaryPlant growth rate is largely determined by the transition between the successive phases of ce...
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...
Using targeted expression of a constitutively active repressor of GA signalling Susana Ubeda-Tomas e...
Gibberellins (GAs) represent an important class of hormonal signal that regulate growth and developm...
Plant growth rate is largely determined by the transition between the successive phases of cell divi...
The growth of plant organs is influenced by a stream of the phytohormone auxin that flows from the s...
● Root elongation depends on the action of the gibberellin (GA) growth hormones, which promote cell ...
Control over cell growth by mobile regulators underlies much of eukaryotic morphogenesis. In plant r...
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...
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...
SummaryPlant growth involves the integration of many environmental and endogenous signals that toget...
Plant growth involves the integration of many environmental and endogenous signals that together wit...
SummaryPlant growth rate is largely determined by the transition between the successive phases of ce...
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...
Using targeted expression of a constitutively active repressor of GA signalling Susana Ubeda-Tomas e...
Gibberellins (GAs) represent an important class of hormonal signal that regulate growth and developm...
Plant growth rate is largely determined by the transition between the successive phases of cell divi...
The growth of plant organs is influenced by a stream of the phytohormone auxin that flows from the s...
● Root elongation depends on the action of the gibberellin (GA) growth hormones, which promote cell ...
Control over cell growth by mobile regulators underlies much of eukaryotic morphogenesis. In plant r...