The plant hormones gibberellin (GA), ethylene and auxin can promote hypocotyl elongation of Arabidopsis seedlings grown in the light on a low nutrient medium (LNM). In this study, we used hypocotyl elongation as a system to investigate interactions between GA and ethylene or auxin and analysed their influence on the development of stomata in the hypocotyl. When applied together, GA and ethylene or auxin exerted a synergistic effect on hypocotyl elongation. Stimulated cell elongation is the main cause of hypocotyl elongation. Furthermore, hypocotyls treated with GA plus either ethylene or auxin show an increased endoreduplication. In addition, a small but significant increase in cell number was observed in the cortical cell files of hypocoty...
Many processes critical to plant growth and development are regulated by the hormone auxin. Auxin re...
<div><p>Many processes critical to plant growth and development are regulated by the hormone auxin. ...
In many plant species ethylene and gibberellins interact to regulate plant growth and development. I...
Signalling pathways are currently viewed as an intricate network ultimately linking the internal and...
The Arabidopsis hypocotyl, together with hormone mutants and chemical inhibitors, was used to study ...
The Arabidopsis hypocotyl, together with hormone mutants and chemical inhibitors, was used to study ...
Ethylene inhibits hypocotyl elongation in etiolated Arabidopsis seedlings. However, when Arabidopsis...
Dark-grown Arabidopsis seedlings develop an apical hook by differential elongation and division of h...
Dark-grown Arabidopsis seedlings develop an apical hook by differential elongation and division of h...
This review highlights that the auxin gradient, established by local auxin biosynthesis and transpor...
The apical hook develops in the upper part of the hypocotyl when seeds buried in the soil germinate,...
The phytohormone gibberellin (GA) promotes plant growth by stimulating cellular expansion. Whilst it...
The phytohormone gibberellin (GA) promotes plant growth by stimulating cellular expansion. Whilst it...
Plant growth rate is largely determined by the transition between the successive phases of cell divi...
Many processes critical to plant growth and development are regulated by the hormone auxin. Auxin re...
Many processes critical to plant growth and development are regulated by the hormone auxin. Auxin re...
<div><p>Many processes critical to plant growth and development are regulated by the hormone auxin. ...
In many plant species ethylene and gibberellins interact to regulate plant growth and development. I...
Signalling pathways are currently viewed as an intricate network ultimately linking the internal and...
The Arabidopsis hypocotyl, together with hormone mutants and chemical inhibitors, was used to study ...
The Arabidopsis hypocotyl, together with hormone mutants and chemical inhibitors, was used to study ...
Ethylene inhibits hypocotyl elongation in etiolated Arabidopsis seedlings. However, when Arabidopsis...
Dark-grown Arabidopsis seedlings develop an apical hook by differential elongation and division of h...
Dark-grown Arabidopsis seedlings develop an apical hook by differential elongation and division of h...
This review highlights that the auxin gradient, established by local auxin biosynthesis and transpor...
The apical hook develops in the upper part of the hypocotyl when seeds buried in the soil germinate,...
The phytohormone gibberellin (GA) promotes plant growth by stimulating cellular expansion. Whilst it...
The phytohormone gibberellin (GA) promotes plant growth by stimulating cellular expansion. Whilst it...
Plant growth rate is largely determined by the transition between the successive phases of cell divi...
Many processes critical to plant growth and development are regulated by the hormone auxin. Auxin re...
Many processes critical to plant growth and development are regulated by the hormone auxin. Auxin re...
<div><p>Many processes critical to plant growth and development are regulated by the hormone auxin. ...
In many plant species ethylene and gibberellins interact to regulate plant growth and development. I...