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Gene activation of metazoan Fox transcription factors at the onset of metamorphosis in the marine demosponge Amphimedon queenslandica. | LitMetric

AI Article Synopsis

  • Transcription factors from the Forkhead (Fox) gene family play essential roles in animal development, immunity, and physiology.
  • Most Fox genes evolved after the split between animals and choanoflagellates, but some are ancient.
  • In the marine sponge Amphimedon queenslandica, 17 Fox genes were identified, with eight showing rapid expression changes during development, indicating a conserved role in developmental processes across metazoans.

Article Abstract

Transcription factors encoded by the Forkhead (Fox) gene family have diverse, sometimes conserved, regulatory roles in eumetazoan development, immunity, and physiology. Although this gene family includes members that predate the origin of the animal kingdom, the majority of metazoan Fox genes evolved after the divergence of animals and choanoflagellates. Here, we characterize the composition, structure, and expression of Fox genes in the marine demosponge Amphimedon queenslandica to better understand the origin and evolution of this family. The Fox gene repertoire in A. queenslandica appears to be similar to the ancestral metazoan Fox gene family. All 17 A. queenslandica Fox genes are differentially expressed during development and in adult cell types. Remarkably, eight of these, all of which appear to be metazoan-specific, are induced within just 1 h of larval settlement and commencement of metamorphosis. Gene co-expression analyses suggest that these eight Fox genes regulate developmental and physiological processes similar to their roles in other animals. These findings are consistent with Fox genes playing deeply ancestral roles in animal development and physiology, including in response to changes in the external environment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9828451PMC
http://dx.doi.org/10.1111/dgd.12812DOI Listing

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