Overexpression of EVE1, a novel ubiquitin family protein, arrests inflorescence stem development in Arabidopsis

J Exp Bot. 2011 Aug;62(13):4571-81. doi: 10.1093/jxb/err168. Epub 2011 May 30.

Abstract

In Arabidopsis, inflorescence stem formation is a critical process in phase transition from the vegetative to the reproductive state. Although inflorescence stem development has been reported to depend on the expression of a variety of genes during floral induction and repression, little is known about the molecular mechanisms involved in the control of inflorescence stem formation. By activation T-DNA tagging mutagenesis of Arabidopsis, a dominant gain-of-function mutation, eve1-D (eternally vegetative phase1-Dominant), which has lost the ability to form an inflorescence stem, was isolated. The eve1-D mutation exhibited a dome-shaped primary shoot apical meristem (SAM) in the early vegetative stage, similar to that seen in the wild-type SAM. However, the SAM in the eve1-D mutation failed to transition into an inflorescence meristem (IM) and eventually reached senescence without ever leaving the vegetative phase. The eve1-D mutation also displayed pleiotropic phenotypes, including lobed and wavy rosette leaves, short petioles, and an increased number of rosette leaves. Genetic analysis indicated that the genomic location of the EVE1 gene in Arabidopsis thaliana corresponded to a bacterial artificial chromosome (BAC) F4C21 from chromosome IV at ∼17cM which encoded a novel ubiquitin family protein (At4g03350), consisting of a single exon. The EVE1 protein is composed of 263 amino acids, contains a 52 amino acid ubiquitin domain, and has no glycine residue related to ubiquitin activity at the C-terminus. The eve1-D mutation provides a way to study the regulatory mechanisms that control phase transition from the vegetative to the reproductive state.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amino Acid Sequence
  • Arabidopsis / anatomy & histology
  • Arabidopsis / genetics*
  • Arabidopsis / growth & development*
  • Arabidopsis / metabolism
  • Arabidopsis Proteins / chemistry
  • Arabidopsis Proteins / genetics
  • Arabidopsis Proteins / metabolism*
  • Down-Regulation / genetics
  • Gene Expression Regulation, Developmental
  • Gene Expression Regulation, Plant
  • Genes, Plant / genetics
  • Homeodomain Proteins / genetics
  • Homeodomain Proteins / metabolism
  • Inflorescence / genetics
  • Inflorescence / growth & development*
  • MADS Domain Proteins / genetics
  • MADS Domain Proteins / metabolism
  • Meristem / cytology
  • Meristem / metabolism
  • Meristem / ultrastructure
  • Molecular Sequence Data
  • Mutation / genetics
  • Nuclear Proteins / genetics
  • Nuclear Proteins / metabolism
  • Phenotype
  • Plant Leaves / anatomy & histology
  • Plant Leaves / genetics
  • Plant Leaves / ultrastructure
  • Plant Stems / genetics*
  • Plant Stems / growth & development*
  • Plant Stems / metabolism
  • Plants, Genetically Modified
  • RNA, Antisense / genetics
  • RNA, Antisense / metabolism
  • RNA, Messenger / genetics
  • RNA, Messenger / metabolism
  • Reverse Transcriptase Polymerase Chain Reaction
  • Ubiquitin / chemistry
  • Ubiquitin / genetics
  • Ubiquitin / metabolism*
  • Ubiquitins / chemistry
  • Ubiquitins / genetics
  • Ubiquitins / metabolism*

Substances

  • AP1 protein, Arabidopsis
  • APETALA2 protein, Arabidopsis
  • Arabidopsis Proteins
  • EVE1 protein, Arabidopsis
  • Homeodomain Proteins
  • MADS Domain Proteins
  • Nuclear Proteins
  • RNA, Antisense
  • RNA, Messenger
  • Ubiquitin
  • Ubiquitins