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1.
Viruses ; 6(11): 4242-57, 2014 Nov 07.
Article in English | MEDLINE | ID: mdl-25386843

ABSTRACT

We investigated the protective effects of a viral vector based on an Apple latent spherical virus (ALSV) harboring a segment of the Bean yellow mosaic virus (BYMV) genome against mosaic diseases in pea, broad bean, and eustoma plants caused by BYMV infection. In pea plants pre-inoculated with the ALSV vaccine and challenge inoculated with BYMV expressing green fluorescence protein, BYMV multiplication occurred in inoculated leaves, but was markedly inhibited in the upper leaves. No mosaic symptoms due to BYMV infection were observed in the challenged plants pre-inoculated with the ALSV vaccine. Simultaneous inoculation with the ALSV vaccine and BYMV also prevented mosaic symptoms in broad bean and eustoma plants, and BYMV accumulation was strongly inhibited in the upper leaves of plants treated with the ALSV vaccine. Pea and eustoma plants were pre-inoculated with BYMV followed by inoculation with the ALSV vaccine to investigate the curative effects of the ALSV vaccine. In both plant species, recovery from mosaic symptoms was observed in upper leaves and BYMV accumulation was inhibited in leaves developing post-ALSV vaccination. These results show that ALSV vaccination not only prevents mosaic diseases in pea, broad bean, and eustoma, but that it is also effective in curing these diseases.


Subject(s)
Drug Carriers , Genetic Vectors , Plant Diseases/prevention & control , Plant Leaves/virology , Potyvirus/growth & development , Potyvirus/immunology , Viral Vaccines/immunology , Fabaceae/virology , Gentianaceae/virology , Pisum sativum/virology , Potyvirus/genetics , Viral Vaccines/isolation & purification
2.
Virology ; 446(1-2): 314-24, 2013 Nov.
Article in English | MEDLINE | ID: mdl-24074595

ABSTRACT

Apple latent spherical virus (ALSV)-based vectors experimentally infect a broad range of plant species without causing symptoms and can effectively induce stable virus-induced gene silencing in plants. Here, we show that pre-infection of ALSV vectors harboring part of a target viral genome (we called ALSV vector vaccines here) inhibits the multiplication and spread of the corresponding challenge viruses [Bean yellow mosaic virus, Zucchini yellow mosaic virus (ZYMV), and Cucumber mosaic virus (CMV)] by a homology-dependent resistance. Further, the plants pre-infected with an ALSV vector having genome sequences of both ZYMV and CMV were protected against double inoculation of ZYMV and CMV. More interestingly, a curative effect of an ALSV vector vaccine could also be expected in ZYMV-infected cucumber plants, because the symptoms subsided on subsequent inoculation with an ALSV vector vaccine. This may be due to the invasion of ALSV, but not ZYMV, in the shoot apical meristem of cucumber.


Subject(s)
Cucumovirus/growth & development , Plant Diseases/prevention & control , Plant Diseases/virology , Potyvirus/growth & development , RNA Viruses/genetics , Viral Interference , Cucumis sativus/virology , Cucumovirus/pathogenicity , Gene Silencing , Genome , Potyvirus/pathogenicity , Recombination, Genetic
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