Recent studies have revealed that a mild increase in environmental temperature stimulates the growth of Arabidopsis seedlings by promoting biosynthesis of the plant hormone auxin. However, little is known about the role of other factors in this process. In this report we show that increased temperature promotes rapid accumulation of the TIR1 auxin co-receptor, an effect that is dependent on the molecular chaperone HSP90. In addition, we show that HSP90 and the co-chaperone SGT1 each interact with TIR1, confirming that TIR1 is an HSP90 client. Inhibition of HSP90 activity results in degradation of TIR1 and interestingly, defects in a range of auxin-mediated growth processes at lower as well as higher temperatures. Our results indicate that H...
The plant hormone auxin regulates diverse aspects of plant growth and development. We report that in...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Global environmental temperature changes threaten innumerable plant species. Although various signal...
In order to survive under ever‐changing conditions plants must be able to adaptively respond to the...
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...
12 Pág. Centro de Biotecnología y Genómica de Plantas (CBGP)HOP (HSP70-HSP90 organising protein) is...
The molecular chaperone HEAT SHOCK PROTEIN90 (HSP90) is essential for the maturation of key regulato...
The establishment of localized auxin gradients plays a central role in developmental patterning in p...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
As the overall global mean surface temperature is increasing due to climate change, plant adaptation...
The molecular chaperone HSP90 aids the maturation of a diverse but select set of metastable protein ...
In temperature stress, the main role of heat-shock proteins (HSP) is to act as molecular chaperones...
Many plant species respond to unfavorable high ambient temperatures by adjusting their vegetative bo...
Extreme weather conditions associated with climate change affect many aspects of plant and animal li...
The plant hormone auxin regulates diverse aspects of plant growth and development. We report that in...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Global environmental temperature changes threaten innumerable plant species. Although various signal...
In order to survive under ever‐changing conditions plants must be able to adaptively respond to the...
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...
12 Pág. Centro de Biotecnología y Genómica de Plantas (CBGP)HOP (HSP70-HSP90 organising protein) is...
The molecular chaperone HEAT SHOCK PROTEIN90 (HSP90) is essential for the maturation of key regulato...
The establishment of localized auxin gradients plays a central role in developmental patterning in p...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
As the overall global mean surface temperature is increasing due to climate change, plant adaptation...
The molecular chaperone HSP90 aids the maturation of a diverse but select set of metastable protein ...
In temperature stress, the main role of heat-shock proteins (HSP) is to act as molecular chaperones...
Many plant species respond to unfavorable high ambient temperatures by adjusting their vegetative bo...
Extreme weather conditions associated with climate change affect many aspects of plant and animal li...
The plant hormone auxin regulates diverse aspects of plant growth and development. We report that in...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Global environmental temperature changes threaten innumerable plant species. Although various signal...