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These genes illustrate how both copies of a gene duplicate can be retained.
Up to 384 scans (generally 192 samples in duplicate) can be done at the same time enabling very high throughput.
Depending on the location of mutations, the gene duplicate can be affected differently, with the probabilities of affecting each type of element dictated by the number of sites that can accommodate change and differentially affect function (Liberles et al. 2010).
In particular, we show that clustering on the basis of the function of genes present in duplicate can be used to reconstruct clusters of environments from which these yeast strains were isolated.
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Information about tandem duplicates can be useful in investigations pertaining to gene duplication.
Payments that go astray or are accidentally duplicated can be difficult to retrieve.
In this sector, terminological ambiguities and duplicates can be caused by the division of labor between corporate departments.
Gene duplicates can be preserved permanently by neofunctionalization and/or subfunctionalization, thus generating biological novelty and diversity [47].
There are a number of ways in which functional redundant duplicates can be preserved [ 12, 13].
It has been hypothesized that retention of duplicates can be causally linked to genome compaction [ 37].
Subfunctionalization occurred when both duplicates can be stably maintained in the genome [ 52].
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