A single amino acid substitution in the 126-kDa protein of pepper mild mottle virus controls replication and systemic movement into upper non-inoculated leaves of bell pepper plants

Previously, we generated attenuated variants of pepper mild mottle virus by replacing residue 649 in the 126-kDa replicase protein with various amino acids. Here, we examined the biological properties of the 16 variants that caused either mild mosaic or no mosaic. All but one (A649N) of the mild-mos...

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Published in:Archives of virology Vol. 156; no. 5; pp. 897 - 901
Main Authors: Nakazono-Nagaoka, E., Omura, T., Uehara-Ichiki, T.
Format: Journal Article
Language:English
Published: Vienna Springer Vienna 01-05-2011
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Abstract Previously, we generated attenuated variants of pepper mild mottle virus by replacing residue 649 in the 126-kDa replicase protein with various amino acids. Here, we examined the biological properties of the 16 variants that caused either mild mosaic or no mosaic. All but one (A649N) of the mild-mosaic-inducing strains replicated at higher levels in pepper plants and systemically moved at higher rates into the upper non-inoculated leaves than the no-mosaic strains. C1421, previously selected for practical use, not only caused mild symptoms but also had an especially high replication rate in pepper plants and spread more efficiently into the upper non-inoculated leaves.
AbstractList Previously, we generated attenuated variants of pepper mild mottle virus by replacing residue 649 in the 126-kDa replicase protein with various amino acids. Here, we examined the biological properties of the 16 variants that caused either mild mosaic or no mosaic. All but one (A649N) of the mild-mosaic-inducing strains replicated at higher levels in pepper plants and systemically moved at higher rates into the upper non-inoculated leaves than the no-mosaic strains. C1421, previously selected for practical use, not only caused mild symptoms but also had an especially high replication rate in pepper plants and spread more efficiently into the upper non-inoculated leaves.
Previously, we generated attenuated variants of pepper mild mottle virus by replacing residue 649 in the 126-kDa replicase protein with various amino acids. Here, we examined the biological properties of the 16 variants that caused either mild mosaic or no mosaic. All but one (A649N) of the mild-mosaic-inducing strains replicated at higher levels in pepper plants and systemically moved at higher rates into the upper non-inoculated leaves than the no-mosaic strains. C1421, previously selected for practical use, not only caused mild symptoms but also had an especially high replication rate in pepper plants and spread more efficiently into the upper non-inoculated leaves.[PUBLICATION ABSTRACT]
Author Nakazono-Nagaoka, E.
Uehara-Ichiki, T.
Omura, T.
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  surname: Uehara-Ichiki
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Issue 5
Keywords Coat Protein
Successive Inoculation
Mild Mosaic
Wild Strain
Pepper Plant
Virus
Plant pathogen
Vegetable crop
Dicotyledones
Angiospermae
Flavoring crop
Tobamovirus
Capsicum annuum
Replication
Spermatophyta
Solanaceae
Protein
Language English
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Snippet Previously, we generated attenuated variants of pepper mild mottle virus by replacing residue 649 in the 126-kDa replicase protein with various amino acids....
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StartPage 897
SubjectTerms Amino Acid Substitution
Amino acids
Antigens
Biological and medical sciences
Biomedical and Life Sciences
Biomedicine
Brief Report
Capsicum - virology
Cloning
Fundamental and applied biological sciences. Psychology
Infectious Diseases
Leaves
Medical Microbiology
Microbiology
Miscellaneous
Mutant Proteins - genetics
Mutant Proteins - metabolism
Phytopathology. Animal pests. Plant and forest protection
Plant Leaves - virology
Plant viruses and viroids
Proteins
Tobamovirus - pathogenicity
Viral Proteins - genetics
Viral Proteins - metabolism
Virology
Virulence
Virus Replication
Viruses
Title A single amino acid substitution in the 126-kDa protein of pepper mild mottle virus controls replication and systemic movement into upper non-inoculated leaves of bell pepper plants
URI https://link.springer.com/article/10.1007/s00705-011-0919-x
https://www.ncbi.nlm.nih.gov/pubmed/21293967
https://www.proquest.com/docview/863023109
https://search.proquest.com/docview/1028019451
https://search.proquest.com/docview/863429959
Volume 156
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