Patterns of Insertions and Their Covariation With Substitutions in the Rat, Mouse, and Human Genomes
Open Access
- 1 April 2004
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in Genome Research
- Vol. 14 (4), 517-527
- https://doi.org/10.1101/gr.1984404
Abstract
The rates at which human genomic DNA changes by neutral substitution and insertion of certain families of transposable elements covary in large, megabase-sized segments. We used the rat, mouse, and human genomic DNA sequences to examine these processes in more detail in comparisons over both shorter (rat–mouse) and longer (rodent–primate) times, and demonstrated the generality of the covariation. Different families of transposable elements show distinctive insertion preferences and patterns of variation with substitution rates. SINEs are more abundant in GC-rich DNA, but the regional GC preference for insertion (monitored in young SINEs) differs between rodents and humans. In contrast, insertions in the rodent genomes are predominantly LINEs, which prefer to insert into AT-rich DNA in all three mammals. The insertion frequency of repeats other than SINEs correlates strongly positively with the frequency of substitutions in all species. However, correlations with SINEs show the opposite effects. The correlations are explained only in part by the GC content, indicating that other factors also contribute to the inherent tendency of DNA segments to change over evolutionary time.Keywords
This publication has 43 references indexed in Scilit:
- Genome sequence of the Brown Norway rat yields insights into mammalian evolutionNature, 2004
- LINE-mediated retrotransposition of marked Alu sequencesNature Genetics, 2003
- A Neutral Explanation for the Correlation of Diversity with Recombination Rates in HumansAmerican Journal of Human Genetics, 2003
- Evidence for co-evolution of gene order and recombination rateNature Genetics, 2003
- Initial sequencing and comparative analysis of the mouse genomeNature, 2002
- Clustering of housekeeping genes provides a unified model of gene order in the human genomeNature Genetics, 2002
- Alu repeats and human genomic diversityNature Reviews Genetics, 2002
- Initial sequencing and analysis of the human genomeNature, 2001
- Sequence diversity and chromosomal distribution of “young” Alu repeatsGene, 1995
- Ancestral, Mammalian-wide Subfamilies of LINE-1 Repetitive SequencesJournal of Molecular Biology, 1995