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Tested on 75 samples, these microsatellites were highly polymorphic.
ITS sequences and a population-based screen based on microsatellites were highly concordant.
In addition to being valuable functional markers, the new microsatellites were highly transferable from cultivated to wild accessions.
All 23 microsatellites were highly polymorphic, with an average of 17 (±16) alleles per locus with a range of 4 85 alleles.
These microsatellites were highly polymorphic with between eight and 14 alleles in a sample of 72 Border collies (Additional file 1, table S2).
The microsatellites were highly variable, with 10 21 alleles per locus (Table 2) and the probability of sampling two different individuals with the same genotype ranged between 4.80 × 10-3 and 2.88 × 10-16.
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Microsatellites are highly polymorphic markers which have been used in a wide range of genetic studies.
Microsatellites are highly abundant in eukaryotic genomes but their function and evolution are not yet well understood.
The genomic distribution of microsatellites was highly non-uniform and positively or negatively correlated with genes or transposable elements, respectively.
38, 43 Microsatellites are highly abundant in the P. falciparum genome; an average of one microsatellite locus is found per 2 3 kb of sequence.
Results from these studies suggest that microsatellites are highly mutable, making them an attractive target for study, and that tetranucleotide repeats may be particularly sensitive to DNA damage.
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