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Experimental characterization of chicken OSX/SP7 and embryonic expression analysis reveal skeletal and neural expression domains

Lonken, D.; Zhakshylykova, C.; Lumper, C.; Khan, R.; Neukum, M.; Hirt, B.; Kohler, U.; Winkler, C.; Wizenmann, A.; Guimera, J.

2026-08-04 developmental biology
10.64898/2026.08.04.740911 bioRxiv
Show abstract

The specificity protein 7 (SP7), also known as Osterix (OSX), is a zinc-finger transcription factor essential for osteoblast differentiation and skeletal development. Hereafter, the protein is referred to as OSX/SP7 throughout the manuscript. Although OSX/SP7 has been extensively studied in mammals and teleost fish, its developmental expression pattern in chicken (Gallus gallus) has not been described. Using an experimentally isolated chicken OSX/SP7 sequence, we examined OSX/SP7 mRNA expression during embryogenesis by in situ hybridization. As expected, OSX/SP7 expression was detected in developing skeletal elements undergoing ossification. Unexpectedly, transcripts were also observed in the neuroepithelium, retina, central nervous system, embryonic muscles and integument. Notably, OSX/SP7 expression was present in the neural tube from Hamburger and Hamilton stage 9 and persisted in the developing central nervous system until at least HH40, suggesting that OSX/SP7 functions during avian development may extend beyond osteogenesis. In addition, we reconstructed the chicken OSX/SP7 coding sequence and inferred its associated untranslated regions. The reconstructed ORF was independently supported by maternal and paternal haplotype-resolved chicken genome assemblies and retained the characteristic domain architecture of vertebrate OSX/SP7 proteins despite substantial divergence outside the DNA-binding domain. Taken together, these findings broaden the developmental landscape of OSX/SP7 expression in birds and provide new molecular resources for future studies of OSX/SP7 regulation and function during vertebrate development.

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