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A large chromosomal inversion shapes gene expression in seaweed flies (). | LitMetric

Inversions often underlie complex adaptive traits, but the genic targets inside them are largely unknown. Gene expression profiling provides a powerful way to link inversions with their phenotypic consequences. We examined the effects of the inversion in the seaweed fly on gene expression variation across sexes and life stages. Our analyses revealed that shapes global expression patterns, most likely via linked variation, but the extent of this effect is variable, with much stronger effects in adults than larvae. Furthermore, within adults, both common as well as sex-specific patterns were found. The vast majority of these differentially expressed genes mapped to . However, genes that were differentially expressed in a single context (i.e., in males, females, or larvae) were more likely to be located outside of . By combining our findings with genomic scans for environmentally associated SNPs, we were able to pinpoint candidate variants in the inversion that may underlie mechanistic pathways that determine phenotypes. Together the results of this study, combined with previous findings, support the notion that the polymorphic inversion in this species is a major factor shaping both coding and regulatory variation resulting in highly complex adaptive effects.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8645196PMC
http://dx.doi.org/10.1002/evl3.260DOI Listing

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