The function of DNA methylation in higher plants was investigated by expression of a complementary DNA encoding a cytosine methyltransferase (MET1) from Arabidopsis thaliana as an antisense RNA in transgenic plants. This expression resulted in a 34 to 71 percent reduction in total genomic cytosine methylation. Loss of methylation was observed in both repetitive DNA and single-copy gene sequences. Developmental effects included altered heterochrony, changes in meristem identity and organ number, and female sterility. Cytosine demethylation prolonged both vegetative and reproductive phases of development. These findings implicate DNA methylation in establishing or maintaining epigenetic developmental states in the meristem.

Demethylation-induced developmental pleiotropy in Arabidopsis / M.J. Ronemus, M. Galbiati, C. Ticknor, J. Chen, S.L. Dellaporta. - In: SCIENCE. - ISSN 0036-8075. - 273:5275(1996), pp. 654-657. [10.1126/science.273.5275.654]

Demethylation-induced developmental pleiotropy in Arabidopsis

M. Galbiati;
1996

Abstract

The function of DNA methylation in higher plants was investigated by expression of a complementary DNA encoding a cytosine methyltransferase (MET1) from Arabidopsis thaliana as an antisense RNA in transgenic plants. This expression resulted in a 34 to 71 percent reduction in total genomic cytosine methylation. Loss of methylation was observed in both repetitive DNA and single-copy gene sequences. Developmental effects included altered heterochrony, changes in meristem identity and organ number, and female sterility. Cytosine demethylation prolonged both vegetative and reproductive phases of development. These findings implicate DNA methylation in establishing or maintaining epigenetic developmental states in the meristem.
Settore BIO/18 - Genetica
1996
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/227997
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