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PMID: 8058033 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Homology-dependent gene silencing in transgenic plants: epistatic silencing loci contain multiple copies of methylated transgenes.

Molecular & general genetics : MGG ·Vol. 244 ·No. 3 ·1994-08-02 ·Pages 219-29

Matzke AJ, Neuhuber F, Park YD, Ambros PF, Matzke MA

Abstract

Previous work has shown that two homologous, unlinked transgene loci can interact in plant nuclei, leading to non-reciprocal trans-inactivation and methylation of genes at one locus. Here, we report the structure and methylation of different transgene loci that contain the same construct but are variably able to inactivate and methylate a partially homologous, unlinked target locus. Silencing loci comprised multiple, methylated copies of the transgene construct, whereas a non-silencing locus contained a single, unmethylated copy. The correspondence between strength of silencing activity and copy number/degree of methylation was further demonstrated by producing novel alleles of a strong silencing locus: reducing the transgene copy number and methylation within this silencing locus decreased its ability to inactivate the target locus. The strong silencing locus, which was located close to a telomere, trans-inactivated various structural variants of the original target construct, regardless of their location in the genome. This suggests that the silencing locus can scan the entire genome for homologous regions, a process possibly aided by its telomeric location. Our data support the idea that epistatic trans-inactivation of unlinked, homologous transgenes in plants results from a pre-existing epigenetic difference between transgene loci, which is subsequently equalized by "epigene conversion" involving DNA-DNA pairing.

Related Genes
MeSH Terms
Alleles Amino Acid Oxidoreductases/genetics Chromosome Mapping DNA Modification Methylases/metabolism Epistasis, Genetic Gene Expression Regulation Genes, Plant/genetics Genes, Regulator/genetics In Situ Hybridization Methylation Models, Genetic Multigene Family/genetics Plants, Genetically Modified Plants, Toxic Promoter Regions, Genetic/genetics Sequence Homology, Nucleic Acid Tobacco/genetics
Chemicals
Amino Acid Oxidoreductases nopaline synthase D-octopine dehydrogenase DNA Modification Methylases
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Matzke A J
Institute of Molecular Biology, Austrian Academy of Sciences, Salzburg.
Neuhuber F
Park Y D
Ambros P F
Matzke M A
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Article Info
Journal
Molecular & general genetics : MGG
Abbr.
Mol Gen Genet
ISSN
0026-8925
Published
1994-08-02
Pages
219-29
Language
English
Region
Germany
NLM ID
0125036
Subset
IM
Corrections
ErratumIn
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