Multiple plant developmental processes, such as lateral root development, depend on auxin distribution patterns that are in part generated by the PIN-formed family of auxin-efflux transporters. Here we propose that AUXIN RESPONSE FACTOR7 (ARF7) and the ARF7-regulated FOUR LIPS/MYB124 (FLP) transcription factors jointly form a coherent feed-forward motif that mediates the auxin-responsive PIN3 transcription in planta to steer the early steps of lateral root formation. This regulatory mechanism might endow the PIN3 circuitry with a temporal 'memory' of auxin stimuli, potentially maintaining and enhancing the robustness of the auxin flux directionality during lateral root development. The cooperative action between canonical auxin signalling a...
Auxin regulates plant growth and development through the transcription factors (TFs) of the AUXIN RE...
Plant growth and development of new organs depend on the continuous activity of the meristems. In th...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
PIN proteins are auxin export carriers that direct intercellular auxin flow and in turn regulate man...
A coherent transcriptional feed-forward motif model for mediating auxin-sensitive PIN3 expression du...
DoctorThe phytohormone auxin is a key developmental signal in plants. Until now, only auxin percepti...
The formation of lateral roots is an important post-embryonic developmental process that allows plan...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
International audienceRoot architecture plays an important role in water and nutrient acquisition an...
In this review, we summarize the different biosynthesis-related pathways that contribute to the regu...
The plant hormone auxin has crucial roles in almost all aspects of plant growth and development. Con...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
Auxin regulates plant growth and development through the transcription factors (TFs) of the AUXIN RE...
Plant growth and development of new organs depend on the continuous activity of the meristems. In th...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
Multiple plant developmental processes, such as lateral root development, depend on auxin distributi...
PIN proteins are auxin export carriers that direct intercellular auxin flow and in turn regulate man...
A coherent transcriptional feed-forward motif model for mediating auxin-sensitive PIN3 expression du...
DoctorThe phytohormone auxin is a key developmental signal in plants. Until now, only auxin percepti...
The formation of lateral roots is an important post-embryonic developmental process that allows plan...
Lateral root primordia (LRP) originate from pericycle stem cells located deep within parental root t...
International audienceRoot architecture plays an important role in water and nutrient acquisition an...
In this review, we summarize the different biosynthesis-related pathways that contribute to the regu...
The plant hormone auxin has crucial roles in almost all aspects of plant growth and development. Con...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
Auxin regulates plant growth and development through the transcription factors (TFs) of the AUXIN RE...
Plant growth and development of new organs depend on the continuous activity of the meristems. In th...
In Arabidopsis, lateral roots originate from pericycle cells deep within the primary root. New later...