• Title of article

    Morphological and biochemical characterization of Erwinia amylovora-induced hypersensitive cell death in apple leaves

  • Author/Authors

    Galina Iakimova، نويسنده , , Elena T. and Sobiczewski، نويسنده , , Piotr and Michalczuk، نويسنده , , Lech and W?grzynowicz-Lesiak، نويسنده , , El?bieta and Mikici?ski، نويسنده , , Artur and Woltering، نويسنده , , Ernst J.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    14
  • From page
    292
  • To page
    305
  • Abstract
    In attached apple leaves, spot-inoculated with Erwinia amylovora, the phenotypic appearance of the hypersensitive response (HR) and the participation of ethylene, reactive oxygen species (ROS) and of vacuolar processing enzyme (VPE) (a plant caspase-1-like protease) were analysed. The HR in both the resistant and susceptible genotypes expressed a similar pattern of distinguishable micro HR lesions that progressed into confined macro HR lesions. The HR symptoms in apple were compared to those in non-host tobacco. The morphology of dead cells (protoplast shrinkage and retraction from cell wall) in apple leaves resembled necrotic programmed cell death (PCD). Lesion formation in both cv. Free Redstar (resistant) and cv. Idared (highly susceptible) was preceded by ROS accumulation and elevation of ethylene levels. Treatment of infected leaves with an inhibitor of ethylene synthesis led to a decrease of ethylene emission and suppression of lesion development in both cultivars. In the resistant but not in the susceptible apple cultivar an early and late increase in VPE gene expression was detected. This suggests that VPE might be an underlying component of the response to E. amylovora in resistant apple cultivars. The findings show that in the studied pathosystem the cell death during the HR proceeds through a signal transduction cascade in which ROS, ethylene and VPE pathways play a role.
  • Keywords
    hypersensitive response , APPLE , Vacuolar processing enzyme , programmed cell death , Reactive oxygen species , ethylene , Erwinia amylovora
  • Journal title
    Plant Physiology and Biochemistry
  • Serial Year
    2013
  • Journal title
    Plant Physiology and Biochemistry
  • Record number

    2123694