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Next-generation plasmids for transgenesis in zebrafish and beyond

Kemmler, C. L.; Moran, H. R.; Murray, B. F.; Scoresby, A.; Klem, J. R.; Eckert, R. L.; Lepovsky, E.; Bertho, S.; Nieuwenhuize, S.; Burger, S.; D'Agati, G.; Betz, C.; Puller, A.-C.; Felker, A.; Ditrychova, K.; Boetschi, S.; Affolter, M.; Rohner, N.; Lovely, C. B.; Kwan, K. M.; Burger, A.; Mosimann, C.

2022-12-14 genetics
10.1101/2022.12.13.520107 bioRxiv
Show abstract

Transgenesis is an essential technique for any genetic model. Tol2-based transgenesis paired with Gateway-compatible vector collections has transformed zebrafish transgenesis with an accessible, modular system. Here, we established several next-generation transgenesis tools for zebrafish and other species to expand and enhance transgenic applications. To facilitate gene-regulatory element testing, we generated Gateway middle entry vectors harboring the small mouse beta-globin minimal promoter coupled to several fluorophores, CreERT2, and Gal4. To extend the color spectrum for transgenic applications, we established middle entry vectors encoding the bright, blue-fluorescent protein mCerulean and mApple as an alternative red fluorophore. We present a series of p2A peptide-based 3 vectors with different fluorophores and subcellular localizations to co-label cells expressing proteins of interest. Lastly, we established Tol2 destination vectors carrying the zebrafish exorh promoter driving different fluorophores as a pineal gland-specific transgenesis marker active prior to hatching and through adulthood. exorh-based reporters and transgenesis markers also drive specific pineal gland expression in the eye-less cavefish (Astyanax). Together, our vectors provide versatile reagents for transgenesis applications in zebrafish, cavefish, and other models.

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