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PMID: 26638018 Published · ppublish English

The contribution of translesion synthesis polymerases on geminiviral replication.

Virology ·Vol. 488 ·2016-06-13

Richter Kathrin S, Götz Monika, Winter Stephan, Jeske Holger

Abstract

Geminiviruses multiply primarily in the plant phloem, but never in meristems. Their Rep protein can activate DNA synthesis in differentiated cells. However, when their single-stranded DNA is injected into the phloem by insects, no Rep is present for inducing initial complementary strand replication. Considering a contribution of translesion synthesis (TLS) polymerases in plants, four of them (Polη, Polζ, Polκ, Rev1) are highly and constitutively expressed in differentiated tissues like the phloem. Two geminiviruses (Euphorbia yellow mosaic virus, Cleome leaf crumple virus), inoculated either biolistically or by whiteflies, replicated in Arabidopsis thaliana mutant lines of these genes to the same extent as in wild type plants. Comparative deep sequencing of geminiviral DNAs, however, showed a high exchange rate (10(-4)-10(-3)) similar to the phylogenetic variation described before and a significant difference in nucleotide substation rates if Polη and Polζ were absent, with a differential response to the viral DNA components.

Keywords
Complementary strand replication DNA damage tolerance Geminivirus evolution Mutation rate Polymerase ζ Polymerase η
Article Info
Journal
Virology
Abbr.
Virology
Published
2016-06-13
Indexed
2016-02-06
Updated
2016-02-06
Language
English
Country/Region
United States
NLM ID
0110674
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