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The importance of the KR-rich region of the coat protein of Ourmia melon virus for host specificity, tissue tropism, and interference with antiviral defense

Academic Article
Publication Date:
2015
abstract:
The N-terminal region of the Ourmia melon virus (OuMV) coat protein (CP) contains a short lysine/arginine-rich (KR) region. By alanine scanning mutagenesis, we showed that the KR region influences pathogenicity and virulence of OuMV without altering viral particle assembly. A mutant, called OuMV6710, with three basic residue substitutions in the KR region, was impaired in the ability to maintain the initial systemic infection in Nicotiana benthamiana and to infect both cucumber and melon plants systemically. The integrity of this protein region was also crucial for encapsidation of viral genomic RNA; in fact, certain mutations within the KR region partially compromised the RNA encapsidation efficiency of the CP. In Arabidopsis thaliana Col-0, OuMV6710 was impaired in particle accumulation; however, this phenotype was abolished in dcl2/dcl4 and dcl2/dcl3/dcl4 Arabidopsis mutants defective for antiviral silencing. Moreover, in contrast to CPwt, in situ immunolocalization experiments indicated that CP6710 accumulates efficiently in the spongy mesophyll tissue of infected N. benthamiana and A. thaliana leaves but only occasionally infects palisade tissues. These results provided strong evidence of a crucial role for OuMV CP during viral infection and highlighted the relevance of the KR region in determining tissue tropism, host range, pathogenicity, and RNA affinity, which may be all correlated with a possible CP silencing-suppression activity.
Iris type:
01.01 Articolo in rivista
Keywords:
Ourmia melon virus; coat protein; anti-viral defence; lysine/arginine-rich region
List of contributors:
Rossi, Marika; Balestrini, RAFFAELLA MARIA; Turina, Massimo; Ciuffo, Marina; Vallino, Marta; Abba', Simona
Authors of the University:
ABBA' SIMONA
BALESTRINI RAFFAELLA MARIA
CIUFFO MARINA
ROSSI MARIKA
TURINA MASSIMO
VALLINO MARTA
Handle:
https://iris.cnr.it/handle/20.500.14243/303484
Published in:
MOLECULAR PLANT-MICROBE INTERACTIONS
Journal
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