Reverse genetic screening reveals poor correlation between morpholino-induced and mutant phenotypes in zebrafish
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Publication date
2015
Authors
Kok, Fatma O.
Shin, Masahiro
Ni, Chih Wen
Gupta, Ankit
Grosse, Ann S.
van Impel, Andreas
Kirchmaier, Bettina
Peterson-Maduro, Josi
Kourkoulis, George
Male, Ira
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Document Type
Article
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Abstract
The widespread availability of programmable site-specific nucleases now enables targeted gene disruption in the zebrafish. In this study, we applied site-specific nucleases to generate zebrafish lines bearing individual mutations in more than 20 genes. We found that mutations in only a small proportion of genes caused defects in embryogenesis. Moreover, mutants for ten different genes failed to recapitulate published Morpholino-induced phenotypes (morphants). The absence of phenotypes in mutant embryos was not likely due to maternal effects or failure to eliminate gene function. Consistently, a comparison of published morphant defects with theSanger Zebrafish Mutation Project revealed thatapproximately 80% of morphant phenotypes were not observed in mutant embryos, similar to our mutant collection. Based on these results, we suggest that mutant phenotypes become the standard metric to define gene function in zebrafish, afterwhich Morpholinos that recapitulate respective phenotypes could be reliably applied for ancillary analyses.
Keywords
Developmental Biology, Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't
Citation
Kok, F O, Shin, M, Ni, C W, Gupta, A, Grosse, A S, van Impel, A, Kirchmaier, B C, Peterson-Maduro, J, Kourkoulis, G, Male, I, DeSantis, D F, Sheppard-Tindell, S, Ebarasi, L, Betsholtz, C, Schulte-Merker, S, Wolfe, S A & Lawson, N D 2015, 'Reverse genetic screening reveals poor correlation between morpholino-induced and mutant phenotypes in zebrafish', Developmental Cell, vol. 32, no. 1, pp. 97-108. https://doi.org/10.1016/j.devcel.2014.11.018