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Similarly, we found the maximum number of repeats across individuals to be positively correlated with heterozygosity.
Similarly, the maximum number of repeats was positively correlated with heterozygosity for loci with a single embedded tri-nucleotide STR region (ρ = 0.228, P = 0.008).
We also found the maximum number of repeats to be positively correlated with heterozygosity for loci with two separate di-nucleotide STR regions (ρ = 0.669, P = 0.035).
We set α i = 1 and γ i = 1 for all i ∈ {1, 2, ⋯, n}, and we set the maximum number of repeats to be 20.
The maximum number of repeats for each motif was: di = 63 (average = 13), tri = 31 (average = 6), tetra = 21 (average = 7).
However, no significant correlation was observed between the maximum number of repeats and heterozygosity for tri-nucleotide loci with two separate STR regions (Table 5).
Similar(49)
The maximum number of repeated BMD measurements was 8.
Such correlation between number of alleles, maximum number of repeat units and PIC value has been observed in other earlier studies [ 56].
Most of the SSR motif polymorphisms were one to two repeat unit changes, and the maximum number of repeat unit changes observed were three (Table 5).
We find the mean and maximum numbers of repeats across individuals to be positively correlated with heterozygosity.
Separate investigations of determinants of microsatellite variability in humans and chimpanzees uncover similar patterns with mean and maximum numbers of repeats, as well as numbers and ranges of distinct alleles, all important factors in predicting heterozygosity.
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