Regulation of cell fate determination by single-repeat R3 MYB transcription factors in Arabidopsis
Explore this paper's citation graph
Summary
In the model plant Arabidopsis, R3 MYBs mediate lateral inhibition during epidermal patterning and are best characterized for their regulatory roles in trichome and root hair development.
- Type
- review
- Published
- 2014-03-10
- Cited by
- 116
- References
- 90
- Access
- Open access
- OpenAlex
- https://openalex.org/W1972878962
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11820491
Keywords
MYB, Arabidopsis, Transcription factor, Biology, Genetics
References
- MYBL2 is a new regulator of flavonoid biosynthesis in Arabidopsis thaliana.
- Comparison of TRY and the closely related At1g01380 gene in controlling Arabidopsis trichome patterning.
- New insights into the mechanism of development of Arabidopsis root hairs and trichomes.
- The R2R3-MYB gene family in Arabidopsis thaliana.
- Functional characterization of TRICHOMELESS2, a new single-repeat R3 MYB transcription factor in the regulation of trichome patterning in Arabidopsis
- A Gene Regulatory Network for Root Epidermis Cell Differentiation in Arabidopsis
- The ENHANCER OF TRY AND CPC1 gene acts redundantly with TRIPTYCHON and CAPRICE in trichome and root hair cell patterning in Arabidopsis.
- The patterning of epidermal hairs in Arabidopsis--updated.
- A Single Amino Acid Replacement in ETC2 Shapes Trichome Patterning in Natural Arabidopsis Populations
- Comprehensive analysis of single-repeat R3 MYB proteins in epidermal cell patterning and their transcriptional regulation in Arabidopsis
- Epidermal pattern formation in the root and shoot of Arabidopsis.
- Regulation of epidermal cell fate in Arabidopsis roots: the importance of multiple feedback loops
- A Mutual Support Mechanism through Intercellular Movement of CAPRICE and GLABRA3 Can Pattern the Arabidopsis Root Epidermis
- The TTG1-bHLH-MYB complex controls trichome cell fate and patterning through direct targeting of regulatory loci
- TRIPTYCHON and CAPRICE mediate lateral inhibition during trichome and root hair patterning in Arabidopsis
- Ubiquitin protein ligase 3 mediates the proteasomal degradation of GLABROUS 3 and ENHANCER OF GLABROUS 3, regulators of trichome development and flavonoid biosynthesis in Arabidopsis.
- A myb gene required for leaf trichome differentiation in Arabidopsis is expressed in stipules.
- Control of Plant Trichome and Root-Hair Development by a Tomato (Solanum lycopersicum) R3 MYB Transcription Factor
- Distinct relationships between GLABRA2 and single-repeat R3 MYB transcription factors in the regulation of trichome and root hair patterning in Arabidopsis.
- Trichome dynamics and artemisinin accumulation during development and senescence of Artemisia annua leaves.
Cited by
- Transcriptional control of flavonoid biosynthesis by MYB-bHLH-WDR complexes.
- Ectopic expression of R3 MYB transcription factor gene OsTCL1 in Arabidopsis, but not rice, affects trichome and root hair formation
- The atroviolacea Gene Encodes an R3-MYB Protein Repressing Anthocyanin Synthesis in Tomato Plants
- MicroProteins: small size-big impact.
- Control of trichome formation in Arabidopsis by poplar single-repeat R3 MYB transcription factors
- Analysis of interactions between heterologously produced bHLH and MYB proteins that regulate anthocyanin biosynthesis: quantitative interaction kinetics by Microscale Thermophoresis.
- Salt bladders: do they matter?
- Molecular basis of natural variation and environmental control of trichome patterning
- An overview of the gene regulatory network controlling trichome development in the model plant, Arabidopsis
- Regulation of cell fate determination in plants
- Characterization of an activation-tagged mutant uncovers a role of GLABRA2 in anthocyanin biosynthesis in Arabidopsis.
- Defining the link between epidermal patterning and auxin responsiveness in the Arabidopsis thaliana root.
- Arabidopsis LEAFY COTYLEDON1 controls cell fate determination during post-embryonic development
- Involvement of a carbohydrate-binding F-box-Nictaba protein from Arabidopsis thaliana in plant stress responses
- Flowering and trichome development share hormonal and transcription factor regulation.
- A single amino acid substitution in the R3 domain of GLABRA1 leads to inhibition of trichome formation in Arabidopsis without affecting its interaction with GLABRA3.
- The ectopic localization of CAPRICE LIKE MYB3 protein in Arabidopsis root epidermis.
- The Arabidopsis CAPRICE protein fused to the VP16 transcriptional activation domain alters root hair and trichome development
- Combinatorial control of plant gene expression.
- Two IIIf Clade-bHLHs from Freesia hybrida Play Divergent Roles in Flavonoid Biosynthesis and Trichome Formation when Ectopically Expressed in Arabidopsis
Related papers
- Identification and characterization of PaGL1-like genes from Platanus acerifolia related to the regulation of trichomes
- Regulation of root hair cell differentiation by R3 MYB transcription factors in tomato and Arabidopsis
- Characterization of Arabidopsis MYB transcription factor gene AtMYB17 and its possible regulation by LEAFY and AGL15
- A CsMYB6-CsTRY module regulates fruit trichome initiation in cucumber
- Advances in MYB Transcription Factors during Salt-Stress Regulation in Plants
- Structural insights into partner selection for MYB and bHLH transcription factor complexes
- Identification of Norway Spruce MYB-bHLH-WDR Transcription Factor Complex Members Linked to Regulation of the Flavonoid Pathway
- MYB transcription factors and their roles in the male reproductive development of flowering plants.
- [The roles of MYB transcription factors on plant defense responses and its molecular mechanism.].