| Literature DB >> 18710530 |
Vicente Arnau1, Miguel Gallach, Ignacio Marín.
Abstract
BACKGROUND: The comparison of DNA sequences is a traditional problem in genomics and bioinformatics. Many new opportunities emerge due to the improvement of personal computers, allowing the implementation of novel strategies of analysis.Entities:
Year: 2008 PMID: 18710530 PMCID: PMC2518268 DOI: 10.1186/1756-0500-1-5
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Some uses of the oligonucleotide profiling strategy. Typical values for the word size (k) and range parameter (R) for analyses involving eukaryotic chromosomes are detailed. If small eukaryotic chromosomes or bacterial genomes are analyzed, the most convenient k and R values may be smaller. When two or more sources are used, results are obtained independently and then compared. Some examples are shown in detail in the supplementary information (Supplementary figures 1 – 5).
| Oligonucleotide, microsatellite quantification, chaos game representation | Any DNA sequence | Same as Source | 1–8 | 1 | See Refs. [ |
| Degree of conservation within a repetitive sequence | Chromosome | Repetitive sequence | 10–14 | 1 | Suppl. Figs. 1A, 2 |
| Variations in repetitive content | Two or more chromosomes | Repetitive sequence | 10–14 | 1 | Suppl. Fig. 3 |
| Sequence localization | Short sequence | Chromosome | 1–14 | 103-106 | Suppl. Figs. 1B, 4 |
| Degree of sequence conservation or changes in sequence complexity among chromosomes | Two or more chromosomes | One of the chromosomes | 12–14 | 1–105 | Suppl. Fig. 5 |
| Detection of singular sequences | Two chromosomes | One of the chromosomes | 12–14 | 1 | See Ref. [ |