Due to their sessile nature, plants have to cope with and adjust to their fluctuating environment. Temperature elevation stimulates the growth of Arabidopsis aerial parts. This process is mediated by increased biosynthesis of the growth-promoting hormone auxin. How plant roots respond to elevated ambient temperature is however still elusive. Here we present strong evidence that temperature elevation impinges on brassinosteroid hormone signaling to alter root growth. We show that elevated temperature leads to increased root elongation, independently of auxin or factors known to drive temperature-mediated shoot growth. We further demonstrate that brassinosteroid signaling regulates root responses to elevated ambient temperature. Increased gro...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Recent studies have revealed that a mild increase in environmental temperature stimulates the growth...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
Plants have a remarkable capacity to adjust their growth and development to elevated ambient tempera...
Elevated growth temperatures are negatively affecting crop productivity by increasing yield losses. ...
The remarkable plasticity of their architecture allows plants to adjust growth to the environment an...
La signalisation des brassinostéroïdes (BR) est importante pour presque tous les aspects du développ...
The environment is continually challenging plants, and in response they use various coping strategie...
Brassinosteroids (BRs) are a group of polyhydroxylated plant steroid hormones crucial for many aspec...
Abstract Growing concern around global warming has led to an increase in research focused on plant r...
This is the author accepted manuscript. The final version is available from The Company of Biologist...
Optimal temperature is one of the key environmental factors necessary for regular plant development,...
Brassinosteroids (BRs) are steroid hormones that are essential for plant growth and development. The...
International audienceHigh-temperature-mediated adaptation in plant architecture is linked to the in...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Recent studies have revealed that a mild increase in environmental temperature stimulates the growth...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...
International audienceDue to their sessile nature, plants have to cope with and adjust to their fluc...
Plants have a remarkable capacity to adjust their growth and development to elevated ambient tempera...
Elevated growth temperatures are negatively affecting crop productivity by increasing yield losses. ...
The remarkable plasticity of their architecture allows plants to adjust growth to the environment an...
La signalisation des brassinostéroïdes (BR) est importante pour presque tous les aspects du développ...
The environment is continually challenging plants, and in response they use various coping strategie...
Brassinosteroids (BRs) are a group of polyhydroxylated plant steroid hormones crucial for many aspec...
Abstract Growing concern around global warming has led to an increase in research focused on plant r...
This is the author accepted manuscript. The final version is available from The Company of Biologist...
Optimal temperature is one of the key environmental factors necessary for regular plant development,...
Brassinosteroids (BRs) are steroid hormones that are essential for plant growth and development. The...
International audienceHigh-temperature-mediated adaptation in plant architecture is linked to the in...
Global climate change has broad-ranging impacts on the natural environment and human civilization. I...
Recent studies have revealed that a mild increase in environmental temperature stimulates the growth...
Small increases in ambient temperature can elicit striking effects on plant architecture, collective...