The ability to withstand environmental temperature variation is essential for plant survival. Formative studies in Arabidopsis have revealed that light signalling pathways has a potentially unique role in shielding plant growth and development from seasonal and daily fluctuations in temperature. In this thesis we further investigate the integration of the light signalling networks and temperature signalling on the molecular level in Arabidopsis. First, we identified the transcript of the bHLH transcription factor LONG HYPOCOTYL IN FAR-RED 1 (HFR1) to be highly dependent on the ambient temperature and under strong control of the red light photoreceptor PHYTOCHROME B (phyB). We found that the long hypocotyl phenotype of the hfr1 muta...
Light and temperature patterns are often correlated under natural plant growth conditions. In this r...
Light signalling mechanisms are crucial for plant adaptation to environmental changes: it has been ...
Plant hypocotyl elongation response to light and temperature. Here the authors show that shade combi...
Light and temperature are two of the most important non-biological signals that plants must be able...
Plant as a sessile organism interacts to environmental cues to respond to various conditions such as...
The ability to withstand environmental temperature variation is essential for plant survival. Former...
Plants are responsive to temperature, and some species can distinguish differences of 1°C. In $\text...
Plants are responsive to temperature, and can distinguish differences of 1ºC. In Arabidopsis, warmer...
SummaryExposure of Arabidopsis plants to high temperature (28°C) results in a dramatic change in pla...
<p>Shade avoidance responses are changes in plant architecture to reduce the part of a body that is ...
In response to elevated ambient temperature Arabidopsis thaliana seedlings display a thermomorphogen...
Temperature is a major factor governing the distribution and seasonal behaviour of plants. Being ses...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
Developmental plasticity enables plants to respond to elevated ambient temperatures by adapting thei...
Light and temperature patterns are often correlated under natural plant growth conditions. In this r...
Light signalling mechanisms are crucial for plant adaptation to environmental changes: it has been ...
Plant hypocotyl elongation response to light and temperature. Here the authors show that shade combi...
Light and temperature are two of the most important non-biological signals that plants must be able...
Plant as a sessile organism interacts to environmental cues to respond to various conditions such as...
The ability to withstand environmental temperature variation is essential for plant survival. Former...
Plants are responsive to temperature, and some species can distinguish differences of 1°C. In $\text...
Plants are responsive to temperature, and can distinguish differences of 1ºC. In Arabidopsis, warmer...
SummaryExposure of Arabidopsis plants to high temperature (28°C) results in a dramatic change in pla...
<p>Shade avoidance responses are changes in plant architecture to reduce the part of a body that is ...
In response to elevated ambient temperature Arabidopsis thaliana seedlings display a thermomorphogen...
Temperature is a major factor governing the distribution and seasonal behaviour of plants. Being ses...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
Developmental plasticity enables plants to respond to elevated ambient temperatures by adapting thei...
Light and temperature patterns are often correlated under natural plant growth conditions. In this r...
Light signalling mechanisms are crucial for plant adaptation to environmental changes: it has been ...
Plant hypocotyl elongation response to light and temperature. Here the authors show that shade combi...