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Related Experiment Video

Updated: Jun 24, 2026

Investigating Tissue- and Organ-specific Phytochrome Responses using FACS-assisted Cell-type Specific Expression Profiling in Arabidopsis thaliana
10:10

Investigating Tissue- and Organ-specific Phytochrome Responses using FACS-assisted Cell-type Specific Expression Profiling in Arabidopsis thaliana

Published on: May 29, 2010

Genetic analysis of early flowering mutants in Arabidopsis defines a class of pleiotropic developmental regulator

Hua Zhang1, Callista Ransom, Philip Ludwig

  • 1Programs in Genetics, Michigan State University, East Lansing, Michigan 48824, USA.

Genetics
|May 17, 2003
PubMed
Summary

Vernalization independence (vip) mutations in Arabidopsis cause cold-independent flowering by suppressing FLOWERING LOCUS C (FLC). VIP3, a WD-repeat protein, is identified as a key component in this novel flowering regulatory pathway.

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Last Updated: Jun 24, 2026

Investigating Tissue- and Organ-specific Phytochrome Responses using FACS-assisted Cell-type Specific Expression Profiling in Arabidopsis thaliana
10:10

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Chromatin Immunoprecipitation Assay for the Identification of Arabidopsis Protein-DNA Interactions In Vivo

Published on: January 15, 2016

Area of Science:

  • Plant molecular biology
  • Epigenetics
  • Arabidopsis thaliana research

Background:

  • FLOWERING LOCUS C (FLC) acts as a repressor of flowering in Arabidopsis, requiring cold exposure (vernalization) for silencing.
  • Vernalization involves epigenetic mechanisms to achieve stable transcriptional silencing of FLC.

Purpose of the Study:

  • To identify genetic factors involved in cold-independent flowering and FLC suppression.
  • To elucidate novel mechanisms regulating flowering time in plants.

Main Methods:

  • Isolation and characterization of vernalization independence (vip) mutations.
  • Positional cloning to identify the VIP3 gene.
  • Genetic analysis and transgenic expression studies.

Main Results:

  • Recessive vip mutations confer cold-independent flowering and FLC suppression.
  • VIP3 encodes a WD-repeat protein, suggesting a role in protein complex assembly.
  • VIP3 acts as a component in a larger regulatory mechanism, with at least six other VIP loci identified.

Conclusions:

  • The VIP gene class represents a previously unrecognized flowering regulatory mechanism in Arabidopsis.
  • VIP3 and related proteins are crucial for integrating flowering signals and developmental pathways.