4.4 Article

The 2b protein of cucumber mosaic virus Is essential for viral infection of the shoot apical meristem and for efficient invasion of leaf primordia in infected tobacco plants

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JOURNAL OF GENERAL VIROLOGY
卷 90, 期 -, 页码 3015-3021

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MICROBIOLOGY SOC
DOI: 10.1099/vir.0.013219-0

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It has been reported previously that a 2b protein-defective mutant of the cucumber mosaic virus (CMV) Pepo strain (Delta 2b) induces only mild symptoms in systemically infected tobacco plants. To clarify further the role of the 2b protein as an RNA silencing suppressor in mosaic symptom expression during CMV infection, this study monitored the sequential distribution of Delta 2b in the shoot meristem and leaf primordia (LP) of inoculated tobacco. Time-course histochernical observations revealed that Delta 2b was distributed in the shoot meristern at 7 days post-inoculation (p.i.), but could not invade shoot apical meristern (SAM) and quickly disappeared from the shoot meristem, whereas wild-type (Pepo) transiently appeared in SAM from 4 to 10 days p.i. In LP, Delta 2b signals were detected only at 14 and 21 days p.i., whereas dense Pepo signals were observed in LP from 4 to 18 days p.i. Northern blot analysis showed that small interfering RNA (siRNA) derived from Delta 2b RNA accumulated earlier in the shoot meristern and LP than that of Pepo. However, a similar amount of siRNA was detected in both Pepo- and Delta 2b-infected plants at late time points. Tissue printing analysis of the inoculated leaves indicated that the areas infected by Pepo increased faster than those infected by Delta 2b, whereas accumulation of Delta 2b in protoplasts was similar to that of Pepo. These findings suggest that the 2b protein of the CMV Pepo strain determines virulence by facilitating the distribution of CMV in the shoot meristern and LP via prevention of RNA silencing and/or acceleration of cell-to-cell movement.

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