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The mole genome reveals regulatory rearrangements associated with adaptive intersexuality. | LitMetric

AI Article Synopsis

  • - The study tackles the challenge of linking genetic variations to observable traits by exploring how female moles develop masculinizing ovotestes, using advanced phylogenomic techniques.
  • - Researchers combined various biological datasets (genome assembly, transcriptomics, etc.) to identify key genetic rearrangements that affect genes related to sex differentiation in moles.
  • - Through experiments with transgenic mice, the study demonstrates that changes in noncoding genetic sequences can significantly influence physical traits, underscoring the effectiveness of holistic genomic analysis.

Article Abstract

Linking genomic variation to phenotypical traits remains a major challenge in evolutionary genetics. In this study, we use phylogenomic strategies to investigate a distinctive trait among mammals: the development of masculinizing ovotestes in female moles. By combining a chromosome-scale genome assembly of the Iberian mole, , with transcriptomic, epigenetic, and chromatin interaction datasets, we identify rearrangements altering the regulatory landscape of genes with distinct gonadal expression patterns. These include a tandem triplication involving , a gene controlling androgen synthesis, and an intrachromosomal inversion involving the pro-testicular growth factor gene , which is heterochronically expressed in mole ovotestes. Transgenic mice with a knock-in mole enhancer or overexpressing showed phenotypes recapitulating mole sexual features. Our results highlight how integrative genomic approaches can reveal the phenotypic impact of noncoding sequence changes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8243244PMC
http://dx.doi.org/10.1126/science.aaz2582DOI Listing

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