The remarkable plasticity of their architecture allows plants to adjust growth to the environment and to overcome adverse conditions. Two examples of environmental stresses that drastically affect shoot development are imminent shade and high temperature. Plants in crowded environments and plants in elevated ambient temperature display very similar phenotypic adaptations of elongated hypocotyls in seedlings and elevated and elongated leaves at later developmental stages. The comparable growth responses to shade and high temperature are partly regulated through shared signaling pathways, of which the phytohormone auxin and the phytochrome interacting factors (PIFs) are important components. During both shade- and temperature-induced elongati...
<p>We show that antiphase light-temperature cycles (negative day-night temperature difference [2DIF]...
Light absorption by plants changes the composition of light inside vegetation. Blue (B) and red (R) ...
The gaseous phytohormone ethylene plays versatile roles in sustaining plant growth and fitness in re...
The remarkable plasticity of their architecture allows plants to adjust growth to the environment an...
Exposure of Arabidopsis plants to high temperature (28 degrees C) results in a dramatic change in pl...
SummaryExposure of Arabidopsis plants to high temperature (28°C) results in a dramatic change in pla...
Plant hypocotyl elongation response to light and temperature. Here the authors show that shade combi...
Abstract Growing concern around global warming has led to an increase in research focused on plant r...
Plants have a remarkable capacity to adjust their growth and development to elevated ambient tempera...
This is the author accepted manuscript. The final version is available from The Company of Biologist...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
In response to elevated ambient temperature Arabidopsis thaliana seedlings display a thermomorphogen...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
<p>We show that antiphase light-temperature cycles (negative day-night temperature difference [2DIF]...
Light absorption by plants changes the composition of light inside vegetation. Blue (B) and red (R) ...
The gaseous phytohormone ethylene plays versatile roles in sustaining plant growth and fitness in re...
The remarkable plasticity of their architecture allows plants to adjust growth to the environment an...
Exposure of Arabidopsis plants to high temperature (28 degrees C) results in a dramatic change in pl...
SummaryExposure of Arabidopsis plants to high temperature (28°C) results in a dramatic change in pla...
Plant hypocotyl elongation response to light and temperature. Here the authors show that shade combi...
Abstract Growing concern around global warming has led to an increase in research focused on plant r...
Plants have a remarkable capacity to adjust their growth and development to elevated ambient tempera...
This is the author accepted manuscript. The final version is available from The Company of Biologist...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
In response to elevated ambient temperature Arabidopsis thaliana seedlings display a thermomorphogen...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
<p>We show that antiphase light-temperature cycles (negative day-night temperature difference [2DIF]...
Light absorption by plants changes the composition of light inside vegetation. Blue (B) and red (R) ...
The gaseous phytohormone ethylene plays versatile roles in sustaining plant growth and fitness in re...