SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin response gradient that peaks at the stem cell niche and gradually decreases as stem cell daughters divide and differentiate [1–3]. The amplitude and extent of this gradient are essential for both stem cell maintenance and root meristem growth [4, 5]. To investigate why expression of some auxin-responsive genes, such as the essential root meristem growth regulator BREVIS RADIX (BRX) [6], deviates from this gradient, we combined experimental and computational approaches. We created cellular-level root meristem models that accurately reproduce distribution of nuclear auxin activity and allow dynamic modeling of regulatory processes to guide experimen...
The plant hormone auxin is thought to provide positional information for patterning during developme...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
International audienceIn the Arabidopsis root meristem, polar auxin transport creates a transcriptio...
SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin respo...
In the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin response gra...
AbstractPlants continuously grow during their complete life span and understanding the mechanisms th...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
In multicellular organisms, a stringent control of the transition between cell division and differen...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
In plants, changes in local auxin concentrations can trigger a range of developmental processes as d...
In plants, changes in local auxin concentrations can trigger a range of developmental processes as d...
SummaryThe spatiotemporal balance between stem cell maintenance, proliferation, and differentiation ...
The plant hormone auxin is thought to provide positional information for patterning during developme...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...
International audienceIn the Arabidopsis root meristem, polar auxin transport creates a transcriptio...
SummaryIn the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin respo...
In the Arabidopsis root meristem, polar auxin transport creates a transcriptional auxin response gra...
AbstractPlants continuously grow during their complete life span and understanding the mechanisms th...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
In multicellular organisms, a stringent control of the transition between cell division and differen...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
The study of the concerted action of hormones and transcription factors is fundamental to understand...
In plants, changes in local auxin concentrations can trigger a range of developmental processes as d...
In plants, changes in local auxin concentrations can trigger a range of developmental processes as d...
SummaryThe spatiotemporal balance between stem cell maintenance, proliferation, and differentiation ...
The plant hormone auxin is thought to provide positional information for patterning during developme...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
An auxin maximum is positioned along the xylem axis of the Arabidopsis root tip. The pattern depends...