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Transcription is a major driving force for plastid genome instability in Arabidopsis

PLoS One.. 2019; 
Pérez Di Giorgio JA1, Lepage É1, Tremblay-Belzile S1, Truche S1, Loubert-Hudon A1, Brisson N1.
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Gene Synthesis … DNA was isolated from plants using the cetyl trimethyl-ammonium bromide (CTAB) DNA<br> extraction protocol [40] plus RNAse A treatment (Fermentas). PCR was conducted using the<br> Taq polymerase (<b>Genscript</b>) according to the manufacturer&#39;s instructions … Get A Quote

摘要

Though it is an essential process, transcription can be a source of genomic instability. For instance, it may generate RNA:DNA hybrids as the nascent transcript hybridizes with the complementary DNA template. These hybrids, called R-loops, act as a major cause of replication fork stalling and DNA breaks. In this study, we show that lowering transcription and R-loop levels in plastids of Arabidopsis thaliana reduces DNA rearrangements and mitigates plastid genome instability phenotypes. This effect can be observed on a genome-wide scale, as the loss of the plastid sigma transcription factor SIG6 prevents DNA rearrangements by favoring conservative repair in the presence of ciprofloxacin-induced DNA damage or in ... More

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