Plant Protect. Sci., 2010, 46(4):145-148 | DOI: 10.17221/10/2010-PPS

Analysis of genetic diversity and phylogeny of partial coat protein domain in Czech and Italian GFLV isolates

Aleš EICHMEIER, Miroslav BARÁNEK, Miroslav PIDRA
Faculty of Horticulture in Lednice, Mendeleum - Institute of Genetics, Mendel University in Brno, Lednice, Czech Republic

The genetic diversity of Grapevine fanleaf virus (GFLV) was evaluated in 4 isolates sampled from naturally infected grapevines from South Moravia (Czech Republic) and 2 Italian isolates from Bari (Italy). Conserved regions within sequences in databases were found and new primers corresponding to these regions were designed and tested for RT-PCR amplification of the CP codifying region. After sequencing of obtained amplicons the similarity of isolates was analysed via alignments of sequences and by means of dendrograms

Keywords: Grapevine fanleaf virus; grapevine; coat protein; sequence

Published: December 31, 2010  Show citation

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EICHMEIER A, BARÁNEK M, PIDRA M. Analysis of genetic diversity and phylogeny of partial coat protein domain in Czech and Italian GFLV isolates. Plant Protect. Sci.. 2010;46(4):145-148. doi: 10.17221/10/2010-PPS.
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References

  1. Boulila M. (2007): Phylogeny and genetic recombination of Grapevine fanleaf virus isolates from naturally infected vineyards in Tunisia. Phytopathologia Mediterranea, 46: 285-294.
  2. Digiaro M., Boscia D., Savino V., Simeone V. (2000): Sanitary status of table grape varieties newly introduced in Apulia (Southern Italy). In: Symons R.H. (ed.): Extended Abstracts 13th Meeting ICVG, 12-17 March 2000. University of Adelaide, Adelaide, Australia: 168-169.
  3. Esmenjaud D., Walter B., Minot J.C., Voison R., Cornuet P. (1993): Biotinavidin ELISA detection of grapevine fanleaf virus in the vector nematode Xiphinema index. Journal of Nematology, 25: 401-405. Go to PubMed...
  4. Izadpanah K., Zaki-Aghl M., Zhang Y.P., Daubert S.D., Rowhani A. (2003): Bermuda grass as a potential reservoir host for Grapevine fanleaf virus. Plant Disease, 87: 1179-1182. Go to original source... Go to PubMed...
  5. Jukes T., Cantor C. (1969): Mammalian Protein Metabolism: Chapter Evolution of Protein Molecules. Academic Press, New York. Go to original source...
  6. Komínek P., Bryxiová M., Glasa M. (2006): Partial molecular characterization of a mild isolate of Grapevine fanleaf virus from South Moravia, Czech Republic. Acta Virologica, 50: 201-205. Go to PubMed...
  7. Le Gall O., Candersee T., Dunez J. (1995): Transfer of the 3' nontranslated region of grapevine chrome mosaic virus RNA-1 by recombination to tomato black ring virus RNA-2 in pseudorecombinant isolates. Journal of General Virology, 76: 1285-1289. Go to original source... Go to PubMed...
  8. Martelli G.P. (1986): Virus and virus-like disease of the grapevine in the Mediterranean area. FAO Plant Protection Bulletin, 34: 25-42.
  9. Martelli G.P., Savino V. (1988): Fanleaf degeneration. In: Pearson R.C., Goheen A. (eds): Compendium of Grape Diseases. APS Press, St. Paul.
  10. Naranghi-Arani P., Daubert S., Rowhani A. (2001): Quasispecies nature of the genome of grapevine fanleaf virus. Journal of General Virology, 82: 1791-1795. Go to original source... Go to PubMed...
  11. Ritzenthaler C., Viry M., Pinck M., Margis R., Fuchs M., Pinck L. (1991): Complete nucleotide sequence and genetic organization of grapevine fanleaf nepovirus RNA1. Journal of General Virology, 72: 2357-2365. Go to original source... Go to PubMed...
  12. SanfaÇon H., Wellink J., Le Gall O., Karasev A., Vlugt van der R., Wetzel T. (2009): Secoviridae: a proposed family of plant viruses within the order Picornavirales that combines the families Sequiviridae and Comoviridae, the unassigned genera Cheravirus and Sadwavirus, and the proposed genus Torradovirus. Archives of Virology, 154: 899-907. Go to original source... Go to PubMed...
  13. Sanger F., Nicklen S., Coulson A.R. (1977): DNA sequencing with chain-terminating inhibitors. Proceedings of the National Academy of Sciences of the United States of America, 74: 5463-5467. Go to original source... Go to PubMed...
  14. Serghini M.A., Fuchs M., Pinck M., Reinbold J., Walter B., Pinck L. (1990): RNA2 of grapevine fanleaf virus: sequence analysis and coat protein cistron location. Journal of General Virology, 7: 1433-1441. Go to original source... Go to PubMed...
  15. Vigne E., Demangeat G., Komar V., Fuchs M. (2005): Characterization of a naturally occurring recombinant isolate of Grapevine fanleaf virus. Transgenic Research, 13: 165-179. Go to original source... Go to PubMed...
  16. Vigne L., Bergdoll M., Guyader S., Fuchs M. (2004): Population structure and genetic variability within isolates of Grapevine fanleaf virus from naturally infected vineyard in France: evidence for mixed infection and recombination. Journal of General Virology, 85: 2435-2445. Go to original source... Go to PubMed...
  17. Wetzel T., Meunier L., Jaeger U., REUSTLE G.M., Krczal G. (2001): Complete nucleotide sequences of the RNAs 2 of German isolates of Grapevine fanleaf and Arabis mosaic nepovirus. Virus Research, 75: 139-145. Go to original source... Go to PubMed...

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