[No authors listed]
Hybrids between species are often characterized by novel gene-expression patterns. A recent study on allele-specific gene expression in hybrids between species of Drosophila revealed cases in which cis- and trans-regulatory elements within species had coevolved in such a way that changes in cis-regulatory elements are compensated by changes in trans-regulatory elements. We hypothesized that such coevolution should often lead to gene misexpression in the hybrid. To test this hypothesis, we estimated allele-specific expression and overall expression levels for 31 genes in D. melanogaster, D. simulans, and their F1 hybrid. We found that 13 genes with cis-trans compensatory evolution are in fact misexpressed in the hybrid. These represent candidate genes whose dysregulation might be the consequence of coevolution of cis- and trans-regulatory elements within species. Using a mathematical model for the regulation of gene expression, we explored the conditions under which cis-trans compensatory evolution can lead to misexpression in interspecific hybrids.
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CR31562, CG14629, Torsin, CG14438, Evi5, CG9360, CG3775, CG15814, CG11236, CG15818, fu12, CG8997, Cyt-b5-r, fbp, CG9338, RPA2, Cyp6w1, PAN2, CG4716, CG4847, PCNA, mth, CG8539, Galk, AcCoAS, CG32444, Obp83cd, WRNexo, mbc, Nmdmc, CR18228, Dsim\Obp83cd, Dsim\GD10957, Dsim\mth, Dsim\GD11280, Dsim\mus209
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