• Title of article

    The Potato Virus X TGBp2 Movement Protein Associates with Endoplasmic ReticulumDerived Vesicles during Virus Infection

  • Author/Authors

    Blancaflor، Elison B. نويسنده , , Nelson، Richard S. نويسنده , , Ju، Ho-Jong نويسنده , , Samuels، Timmy D. نويسنده , , Wang، Yuh-Shuh نويسنده , , Payton، Mark نويسنده , , Mitra، Ruchira نويسنده , , Krishnamurthy، Konduru نويسنده , , Verchot-Lubicz، Jeanmarie نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    -1876
  • From page
    1877
  • To page
    0
  • Abstract
    The green fluorescent protein (GFP) gene was fused to the potato virus X (PVX) TGBp2 gene, inserted into either the PVX infectious clone or pRTL2 plasmids, and used to study protein subcellular targeting. In protoplasts and plants inoculated with PVX-GFP:TGBp2 or transfected with pRTL2-GFP:TGBp2, fluorescence was mainly in vesicles and the endoplasmic reticulum (ER). During late stages of virus infection, fluorescence became increasingly cytosolic and nuclear. Protoplasts transfected with PVX-GFP:TGBp2 or pRTL2-GFP:TGBp2 were treated with cycloheximide and the decline of GFP fluorescence was greater in virus-infected protoplasts than in pRTL2-GFP:TGBp2-transfected protoplasts. Thus, protein instability is enhanced in virus-infected protoplasts, which may account for the cytosolic and nuclear fluorescence during late stages of infection. Immunogold labeling and electron microscopy were used to further characterize the GFP:TGBp2-induced vesicles. Label was associated with the ER and vesicles, but not the Golgi apparatus. The TGBp2-induced vesicles appeared to be ER derived. For comparison, plasmids expressing GFP fused to TGBp3 were transfected to protoplasts, bombarded to tobacco leaves, and studied in transgenic leaves. The GFP:TGBp3 proteins were associated mainly with the ER and did not cause obvious changes in the endomembrane architecture, suggesting that the vesicles reported in GFP:TGBp2 studies were induced by the PVX TGBp2 protein. In double-labeling studies using confocal microscopy, fluorescence was associated with actin filaments, but not with Golgi vesicles. We propose a model in which reorganization of the ER and increased protein degradation is linked to plasmodesmata gating.
  • Keywords
    Numerical models , Abatement and removal , design , mathematical models , Particle size , Sedimentation
  • Journal title
    PLANT PHYSIOLOGY
  • Serial Year
    2005
  • Journal title
    PLANT PHYSIOLOGY
  • Record number

    113885