A minimally invasive fin scratching protocol for fast genotyping and early selection of zebrafish embryos

Author:

Venditti Martina,Pedalino Catia,Rosello Marion,Fasano Giulia,Serafini Malo,Revenu Céline,Del Bene Filippo,Tartaglia Marco,Lauri Antonella

Abstract

AbstractCurrent genetic modification and phenotyping methods in teleost fish allow detailed investigation of vertebrate mechanisms of development, modeling of specific aspects of human diseases and efficient testing of drugs at an organ/organismal level in an unparalleled fast and large-scale mode. Fish-based experimental approaches have boosted the in vivo verification and implementation of scientific advances, offering the quality guaranteed by animal models that ultimately benefit human health, and are not yet fully replaceable by even the most sophisticated in vitro alternatives. Thanks to highly efficient and constantly advancing genetic engineering as well as non-invasive phenotyping methods, the small zebrafish is quickly becoming a popular alternative to large animals’ experimentation. This approach is commonly associated to invasive procedures and increased burden. Here, we present a rapid and minimally invasive method to obtain sufficient genomic material from single zebrafish embryos by simple and precise tail fin scratching that can be robustly used for at least two rounds of genotyping already from embryos within 48 h of development. The described protocol betters currently available methods (such as fin clipping), by minimizing the relative animal distress associated with biopsy at later or adult stages. It allows early selection of embryos with desired genotypes for strategizing culturing or genotype–phenotype correlation experiments, resulting in a net reduction of “surplus” animals used for mutant line generation.

Funder

Fondation pour la Recherche Médicale

Ligue Contre le Cancer

Agence Nationale de la Recherche

Ministero della Salute

H2020 Marie Skłodowska-Curie Actions

Fondazione Umberto Veronesi

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference61 articles.

1. Aleström, P. et al. Zebrafish: Housing and husbandry recommendations. Lab. Anim. 54, 213–224 (2020).

2. Hubrecht, R. C. & Carter, E. The 3Rs and humane experimental technique: Implementing change. Animal (Basel) 9, E754 (2019).

3. Russell, W. M. S. & Burch, R. L. The Principles of Humane Experimental Technique (Methuen, 1959).

4. Guillen, J. FELASA guidelines and recommendations. J. Am. Assoc. Lab. Anim. Sci. 51, 311–321 (2012).

5. European Parliament and the Council of the European Union. Directive 2010/63/EU of the European Parliament and of the Council of 22 September 2010 on the protection of animals used for scientific purposes. Official Journal of the European Union L 276. 53, 33–79 (2010).

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