<div><p>The root epidermis of Arabidopsis provides an exceptional model for studying the molecular basis of cell fate and differentiation. To obtain a systems-level view of root epidermal cell differentiation, we used a genome-wide transcriptome approach to define and organize a large set of genes into a transcriptional regulatory network. Using cell fate mutants that produce only one of the two epidermal cell types, together with fluorescence-activated cell-sorting to preferentially analyze the root epidermis transcriptome, we identified 1,582 genes differentially expressed in the root-hair or non-hair cell types, including a set of 208 “core” root epidermal genes. The organization of the core genes into a network was accomplished by using...
Root hair formation in Arabidopsis thaliana is a well-established model system for epidermal pattern...
The root epidermis is a model system for deciphering the mechanism underpinning the formation of cel...
<p>(A) Flow chart of the steps used to define 154 root-hair cell genes and 54 non-hair cell genes us...
The root epidermis of Arabidopsis thaliana is formed by alternate "les of hair and non-hair cel...
The formation of the root epidermis in Arabidopsis provides a simple and elegant model for the stud...
The formation of the root epidermis in Arabidopsis provides a simple and elegant model for the stud...
In most vascular plants, the root epidermis is composed of root hair cells and non-hair cells. Its s...
Quantitative information on gene activity at single cell-type resolution is essential for the unders...
Background: Quantitative information on gene activity at single cell-type resolution is essential fo...
Recent plant development studies have identified regulatory pathways for epidermal cell differentiat...
Background: Quantitative information on gene activity at single cell-type resolution is essential fo...
The control of cell fate was investigated in the root epidermis of Arabidopsis thaliana . Two distin...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/75165/1/j.1399-3054.2006.00606.x.pd
Root hair formation in Arabidopsis thaliana is a well-established model system for epidermal pattern...
textThe discovery of the Arabidopsis ttg1 mutant almost three decades ago provided a unique opportun...
Root hair formation in Arabidopsis thaliana is a well-established model system for epidermal pattern...
The root epidermis is a model system for deciphering the mechanism underpinning the formation of cel...
<p>(A) Flow chart of the steps used to define 154 root-hair cell genes and 54 non-hair cell genes us...
The root epidermis of Arabidopsis thaliana is formed by alternate "les of hair and non-hair cel...
The formation of the root epidermis in Arabidopsis provides a simple and elegant model for the stud...
The formation of the root epidermis in Arabidopsis provides a simple and elegant model for the stud...
In most vascular plants, the root epidermis is composed of root hair cells and non-hair cells. Its s...
Quantitative information on gene activity at single cell-type resolution is essential for the unders...
Background: Quantitative information on gene activity at single cell-type resolution is essential fo...
Recent plant development studies have identified regulatory pathways for epidermal cell differentiat...
Background: Quantitative information on gene activity at single cell-type resolution is essential fo...
The control of cell fate was investigated in the root epidermis of Arabidopsis thaliana . Two distin...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/75165/1/j.1399-3054.2006.00606.x.pd
Root hair formation in Arabidopsis thaliana is a well-established model system for epidermal pattern...
textThe discovery of the Arabidopsis ttg1 mutant almost three decades ago provided a unique opportun...
Root hair formation in Arabidopsis thaliana is a well-established model system for epidermal pattern...
The root epidermis is a model system for deciphering the mechanism underpinning the formation of cel...
<p>(A) Flow chart of the steps used to define 154 root-hair cell genes and 54 non-hair cell genes us...