A DEMETER-like DNA demethylase governs tomato fruit ripening.
basic_science · Level V
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- Record sourced from PubMed, PMID 26261318.
- Also identified by DOI 10.1073/pnas.1503362112 and PMC identifier 4553810.
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Abstract
In plants, genomic DNA methylation which contributes to development and stress responses can be actively removed by DEMETER-like DNA demethylases (DMLs). Indeed, in Arabidopsis DMLs are important for maternal imprinting and endosperm demethylation, but only a few studies demonstrate the developmental roles of active DNA demethylation conclusively in this plant. Here, we show a direct cause and effect relationship between active DNA demethylation mainly mediated by the tomato DML, SlDML2, and fruit ripening- an important developmental process unique to plants. RNAi SlDML2 knockdown results in ripening inhibition via hypermethylation and repression of the expression of genes encoding ripening transcription factors and rate-limiting enzymes of key biochemical processes such as carotenoid synthesis. Our data demonstrate that active DNA demethylation is central to the control of ripening in tomato.
Medical subject headings
- DNA Glycosylases
- DNA Methylation
- Fruit
- Solanum lycopersicum
- Plant Proteins