Mannan sulphates (MS), obtained by sulphatation of extracellular linear mannan (LM) from Rhodotorula rubra, induced resistance to tobacco mosaic virus (TMV) in hypersensitive plants, retained in isolated protoplasts. MS‐induced resistance in tobacco is accompanied by a marked increase of lytic processes in cells and a decrease of total (acidic and alkaline) protein content. In addition to this, new protein components, including PR‐proteins and antiviral substances, of the inhibitor of virus replication (IVR) type, appeared in treated plant tissues. MS‐induced resistance resembles localized resistance induced by TMV in hypersensitive tobacco plants and could serve as an experimental model for study of the latter.
The isolated cymbidium mosaic virus (CMV) is one of the most wide-spread and dangerous pathogens that infects promising varieties of orchids. It causes characteristic symptoms on orchid plants, which are manifested in the form of a mosaic. Over time, these areas are necrotized, leading to the stop of flowering the plants and reducing their decorative value. The CyMV is not spread by insects-carriers, but is transmitted by the mechanical inoculation with juice. Electron microscopy revealed flexible filamentous viral particles with a length of about 500 nm. The purified viral preparation is sedimented with a single peak with a sedimentation coefficient of 142S. The floating density of the virus in the preformed CsCl gradient corresponded to 1.3 g/cm3. The electrophoretic analysis of proteins in polyacrylamide gel under denatured conditions showed the presence of two polypeptides with molecular weights of 27 and 31 kDa. RNA CyMV has a molecular weight of 2 · 106 Da. In the translation system of rabbit reticulocytes in vitro, a protein with a molecular weight of about 27 kDa is synthesized. The obtained data allow us to refer CyMV to the group of potexviruses.
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