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Rice Dwarf Phytoreovirus Segment S6-Encoded Nonstructural Protein Has a Cell-to-Cell Movement Function

  • Yi Li
  • , Yi M. Bao
  • , Chun H. Wei
  • , Zhen S. Kang
  • , Yong W. Zhong
  • , Peng Mao
  • , Gang Wu
  • , Zhang L. Chen
  • , Joachim Schiemann
  • , Richard S. Nelson
  • Peking University
  • Samuel Roberts Noble Foundation
  • National Institutes of Health
  • Department of Plant Protection
  • Julius Kühn Institute - Federal Research Centre for Cultivated Plants

Research output: Contribution to journalArticlepeer-review

55 Scopus citations

Abstract

Rice dwarf virus (RDV) is a member of the genus Phytoreovirus, which is composed of viruses with segmented double-stranded RNA genomes. Proteins that support the intercellular movement of these viruses in the host have not been identified. Microprojectile bombardment was used to determine which open reading frames (ORFs) support intercellular movement of a heterologous virus. A plasmid containing an infectious clone of Potato virus X (PVX) defective in cell-to-cell movement and expressing either β-glucuronidase or green fluorescent protein (GFP) was used for cobombardment with plasmids containing ORFs from RDV gene segments S1 through S12 onto leaves of Nicotiana benthamiana. Cell-to-cell movement of the movement-defective PVX was restored by cobombardment with a plasmid containing S6. In the absence of S6, no other gene segment supported movement. Identical results were obtained with Nicotiana tabacum, a host that allows fewer viruses to infect and spread within its tissue. S6 supported the cell-to-cell movement of the movement-defective PVX in sink and source leaves of N. benthamiana. A mutant S6 lacking the translation start codon did not complement the cell-to-cell movement of the movement-defective PVX. An S6 protein product (Pns6)-enhanced GFP fusion was observed near or within cell walls of epidermal cells from N. tabacum. By immunocytochemistry, unfused Pns6 was localized to plasmodesmata in rice leaves infected with RDV. S6 thus encodes a protein with characteristics identical to those of other viral proteins required for the cell-to-cell movement of their genome and therefore is likely required for the cell-to-cell movement of RDV.

Original languageEnglish
Pages (from-to)5382-5389
Number of pages8
JournalJournal of Virology
Volume78
Issue number10
DOIs
StatePublished - May 2004

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