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Multiple virus resistance in transgenic plants conferred by the human dsRNA-dependent protein kinase
Authors:Pyung Ok Lim  Ung Lee  Jong Sang Ryu  Jang Kyung Choi  Ara Hovanessian  Cheol Soo Kim  Baik Ho Cho  Hong Gil Nam
Affiliation:(1) Division of Molecular and Life Sciences, Pohang University of Science and Technology, San 31, Hyoja Dong, Nam-Gu, Pohang, Kyungbuk, 790-784, Korea;(2) Department of Agricultural Biology, Kangwon National University, Chunchon, 200-701, Korea;(3) Institute Pasteur, Unite d'Oncologie Virale-URA CNRS, 1157, 25 rue du Dr Roux, Paris, 75724, France;(4) College of Agriculture, Chonnam National University, Kwangju, 500-757, Korea
Abstract:We have developed a new strategy for engineering resistance to multipleviruses in plants. The strategy exploits the human double stranded (ds)RNA-dependent protein kinase (PKR). PKR is one of theinterferon-induced enzymes. It confers viral resistance in mammals byinhibitingviral replication through the inactivation of the translational initiationfactor, eIF-2agr, upon activation by dsRNA. The humanPKR gene was fused to the promoter of theArabidopsis blue copper binding protein gene(BCB) that is induced rapidly in response to wounding. Thechimeric gene cassette was introduced into tobacco plants. Expression of thePKR gene in transgenic tobacco plants was demonstrated byRNA gel blot analysis and autophosphorylation assay of anM r 68,000 protein. The transgenic plantsexpressing the PKR gene showed significantly reduced viralsymptoms or no viral symptoms at all, when challenged by different plant RNAviruses, such as Cucumber mosaic virus, Tobaccoetch virus, or Potato virus Y. Thus, expressionof a single component in the human interferon pathway, thePKR gene, can effectively confer resistance to multipleviruses in transgenic plants.
Keywords:Antiviral protein  dsRNA-dependent protein kinase PKR  Multiple resistance  Plant biotechnology  Plant viruses
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