Coordination of flower development by homeotic master regulators

▶ Key logic of homeotic proteins-combinatorial action and multi-functionality. ▶ Homeotic proteins control hormone synthesis/signaling for coordinated organogenesis. ▶ Homeotic proteins program chromatin to coordinate growth and differentiation. Floral homeotic genes encode transcription factors and...

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Published inCurrent opinion in plant biology Vol. 14; no. 1; pp. 53 - 59
Main Author Ito, Toshiro
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.02.2011
[Oxford, UK]: Pergamon: Elsevier Science
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Abstract ▶ Key logic of homeotic proteins-combinatorial action and multi-functionality. ▶ Homeotic proteins control hormone synthesis/signaling for coordinated organogenesis. ▶ Homeotic proteins program chromatin to coordinate growth and differentiation. Floral homeotic genes encode transcription factors and act as master regulators of flower development. The homeotic protein complex is expressed in a specific whorl of the floral primordium and determines floral organ identity by the combinatorial action. Homeotic proteins continue to be expressed until late in flower development to coordinate growth and organogenesis. Recent genomic studies have shown that homeotic proteins bind thousands of target sites in the genome and regulate the expression of transcription factors, chromatin components and various proteins involved in hormone biosynthesis and signaling and other physiological activities. Further, homeotic proteins program chromatin to direct the developmental coordination of stem cell maintenance and differentiation in shaping floral organs.
AbstractList Floral homeotic genes encode transcription factors and act as master regulators of flower development. The homeotic protein complex is expressed in a specific whorl of the floral primordium and determines floral organ identity by the combinatorial action. Homeotic proteins continue to be expressed until late in flower development to coordinate growth and organogenesis. Recent genomic studies have shown that homeotic proteins bind thousands of target sites in the genome and regulate the expression of transcription factors, chromatin components and various proteins involved in hormone biosynthesis and signaling and other physiological activities. Further, homeotic proteins program chromatin to direct the developmental coordination of stem cell maintenance and differentiation in shaping floral organs.
▶ Key logic of homeotic proteins-combinatorial action and multi-functionality. ▶ Homeotic proteins control hormone synthesis/signaling for coordinated organogenesis. ▶ Homeotic proteins program chromatin to coordinate growth and differentiation. Floral homeotic genes encode transcription factors and act as master regulators of flower development. The homeotic protein complex is expressed in a specific whorl of the floral primordium and determines floral organ identity by the combinatorial action. Homeotic proteins continue to be expressed until late in flower development to coordinate growth and organogenesis. Recent genomic studies have shown that homeotic proteins bind thousands of target sites in the genome and regulate the expression of transcription factors, chromatin components and various proteins involved in hormone biosynthesis and signaling and other physiological activities. Further, homeotic proteins program chromatin to direct the developmental coordination of stem cell maintenance and differentiation in shaping floral organs.
Author Ito, Toshiro
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  organization: Temasek Life Sciences Laboratory (TLL), National University of Singapore, Singapore 117604, Singapore
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Snippet ▶ Key logic of homeotic proteins-combinatorial action and multi-functionality. ▶ Homeotic proteins control hormone synthesis/signaling for coordinated...
Floral homeotic genes encode transcription factors and act as master regulators of flower development. The homeotic protein complex is expressed in a specific...
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StartPage 53
SubjectTerms binding proteins
binding sites
chromatin
DNA-binding proteins
flowering
flowers
Flowers - genetics
Flowers - growth & development
gene expression
gene expression regulation
Gene Expression Regulation, Plant
Genes, Homeobox - genetics
genome
genomics
homeotic genes
literature reviews
Plant Proteins - genetics
Plant Proteins - metabolism
plants
Reproduction - genetics
signal transduction
transcription factors
Title Coordination of flower development by homeotic master regulators
URI https://dx.doi.org/10.1016/j.pbi.2010.08.013
https://www.ncbi.nlm.nih.gov/pubmed/20869907
https://search.proquest.com/docview/847286583
Volume 14
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