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PMID: 9440273 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

The chromosomal distributions of Ty1-copia group retrotransposable elements in higher plants and their implications for genome evolution.

Genetica ·Vol. 100 ·No. 1-3 ·1997-00-00 ·Pages 197-204

Heslop-Harrison JS, Brandes A, Taketa S, Schmidt T, Vershinin AV, Alkhimova EG, Kamm A, Doudrick RL, Schwarzacher T, Katsiotis A, Kubis S, Kumar A, Pearce SR, Flavell AJ, Harrison GE

Abstract

Retrotransposons make up a major fraction--sometimes more than 40%--of all plant genomes investigated so far. We have isolated the reverse transcriptase domains of the Ty1-copia group elements from several species, ranging in genome size from some 100 Mbp to 23,000 Mbp, and determined the distribution patterns of these retrotransposons on metaphase chromosomes and within interphase nuclei by DNA:DNA in situ hybridization. With some exceptions, the reverse transcriptase domains were distributed over the length of the chromosomes. Exclusion from rDNA sites and some centromeres (e.g., slash pine, 23,000 Mbp, or barley, 5500 Mbp) is frequent, whereas many species exclude retrotransposons from other sites of heterochromatin (e.g., intercalary and centromeric sites in broad bean). In contrast, in the plant Arabidopsis thaliana, widely used for plant molecular genetic studies because of its small genome (c. 100 Mbp), the Ty1-copia group reverse transcriptase gene domains are concentrated in the centromeric regions, colocalizing with the 180 bp satellite sequence pAL1. Unlike the pAL1 sequence, however, the Ty1-copia signal is also detectable as weaker, diffuse hybridization along the lengths of the chromosomes. Possible mechanisms for evolution of the contrasting distributions are discussed. Understanding the physical distribution of retrotransposons and comparisons of the distribution between species is critical to understanding their evolution and the significance for generation of the new patterns of variability and in speciation.

MeSH Terms
Chromosome Mapping Evolution, Molecular Genome, Plant In Situ Hybridization Plants/genetics Polymerase Chain Reaction Repetitive Sequences, Nucleic Acid Retroelements/genetics
Chemicals
Retroelements
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Heslop-Harrison J S
John Innes Centre Norwich, UK.
Brandes A
Taketa S
Schmidt T
Vershinin A V
Alkhimova E G
Kamm A
Doudrick R L
Schwarzacher T
Katsiotis A
Kubis S
Kumar A
Pearce S R
Flavell A J
Harrison G E
Article Info
Journal
Genetica
Abbr.
Genetica
ISSN
0016-6707
Published
1997-00-00
Pages
197-204
Language
English
Region
Netherlands
NLM ID
0370740
Subset
IM
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