Literature DB >> 33268901

A fish is not a mouse: understanding differences in background genetics is critical for reproducibility.

Marcus J Crim1, Christian Lawrence2.   

Abstract

Poorly controlled background genetics in animal models contributes to the lack of reproducibility that is increasingly recognized in biomedical research. The laboratory zebrafish, Danio rerio, has been an important model organism for decades in many research areas, yet inbred strains and traditionally managed outbred stocks are not available for this species. Sometimes incorrectly referred to as 'inbred strains' or 'strains', zebrafish wild-type lines possess background genetics that are often not well characterized, and breeding practices for these lines have not been consistent over time or among institutions. In this Perspective, we trace key milestones in the history of one of the most widely used genetic backgrounds, the AB line, to illustrate the dynamic complexity within an example background that is largely invisible when reading the scientific literature. Failure to adequately control for genetic background compromises the validity of experimental outcomes. We therefore propose that authors provide as much specific detail about the origin and genetic makeup of zebrafish lines as is reasonable and possible, and that the terms used to describe background genetics be applied in a way that is consistent with other fish and mammalian model organisms. We strongly encourage the adoption of genetic monitoring for the characterization of existing zebrafish lines, to help detect genetic contamination in breeding colonies and to verify the level of genetic heterogeneity in breeding colonies over time. Careful attention to background genetics will improve transparency and reproducibility, therefore improving the utility of the zebrafish as a model organism.

Entities:  

Year:  2020        PMID: 33268901     DOI: 10.1038/s41684-020-00683-x

Source DB:  PubMed          Journal:  Lab Anim (NY)        ISSN: 0093-7355            Impact factor:   12.625


  42 in total

1.  Reliability, robustness, and reproducibility in mouse behavioral phenotyping: a cross-laboratory study.

Authors:  Silvia Mandillo; Valter Tucci; Sabine M Hölter; Hamid Meziane; Mumna Al Banchaabouchi; Magdalena Kallnik; Heena V Lad; Patrick M Nolan; Abdel-Mouttalib Ouagazzal; Emma L Coghill; Karin Gale; Elisabetta Golini; Sylvie Jacquot; Wojtek Krezel; Andy Parker; Fabrice Riet; Ilka Schneider; Daniela Marazziti; Johan Auwerx; Steve D M Brown; Pierre Chambon; Nadia Rosenthal; Glauco Tocchini-Valentini; Wolfgang Wurst
Journal:  Physiol Genomics       Date:  2008-05-27       Impact factor: 3.107

2.  Strained in Planning Your Mouse Background? Using the HPA Stress Axis as a Biological Readout for Backcrossing Strategies.

Authors:  Jennifer C Chan; Amanda B Houghton; Tracy L Bale
Journal:  Neuropsychopharmacology       Date:  2017-03-31       Impact factor: 7.853

3.  VARIATION AND HETEROZYGOSITY IN SEXUALLY VS. CLONALLY REPRODUCING POPULATIONS OF POECILIOPSIS.

Authors:  Robert C Vrijenhoek; Robert A Angus; R Jack Schultz
Journal:  Evolution       Date:  1977-12       Impact factor: 3.694

4.  CLONAL DIVERSITY IN THE UNISEXUAL FISH POECILIOPSIS MONACHA-LUCIDA : A TISSUE GRAFT ANALYSIS.

Authors:  Robert A Angus; Jack Schultz
Journal:  Evolution       Date:  1979-03       Impact factor: 3.694

5.  Commentary: mouse genetic nomenclature. Standardization of strain, gene, and protein symbols.

Authors:  J P Sundberg; P N Schofield
Journal:  Vet Pathol       Date:  2010-08-04       Impact factor: 2.221

6.  Behavioural performance in three substrains of mouse strain 129.

Authors:  A Montkowski; M Poettig; A Mederer; F Holsboer
Journal:  Brain Res       Date:  1997-07-11       Impact factor: 3.252

7.  Differences in response to a chemical carcinogen within species and clones of the livebearing fish, Poeciliopsis.

Authors:  M E Schultz; R J Schultz
Journal:  Carcinogenesis       Date:  1988-06       Impact factor: 4.944

8.  A comparative phenotypic and genomic analysis of C57BL/6J and C57BL/6N mouse strains.

Authors:  Michelle M Simon; Simon Greenaway; Jacqueline K White; Helmut Fuchs; Valérie Gailus-Durner; Sara Wells; Tania Sorg; Kim Wong; Elodie Bedu; Elizabeth J Cartwright; Romain Dacquin; Sophia Djebali; Jeanne Estabel; Jochen Graw; Neil J Ingham; Ian J Jackson; Andreas Lengeling; Silvia Mandillo; Jacqueline Marvel; Hamid Meziane; Frédéric Preitner; Oliver Puk; Michel Roux; David J Adams; Sarah Atkins; Abdel Ayadi; Lore Becker; Andrew Blake; Debra Brooker; Heather Cater; Marie-France Champy; Roy Combe; Petr Danecek; Armida di Fenza; Hilary Gates; Anna-Karin Gerdin; Elisabetta Golini; John M Hancock; Wolfgang Hans; Sabine M Hölter; Tertius Hough; Pierre Jurdic; Thomas M Keane; Hugh Morgan; Werner Müller; Frauke Neff; George Nicholson; Bastian Pasche; Laura-Anne Roberson; Jan Rozman; Mark Sanderson; Luis Santos; Mohammed Selloum; Carl Shannon; Anne Southwell; Glauco P Tocchini-Valentini; Valerie E Vancollie; Henrik Westerberg; Wolfgang Wurst; Min Zi; Binnaz Yalcin; Ramiro Ramirez-Solis; Karen P Steel; Ann-Marie Mallon; Martin Hrabě de Angelis; Yann Herault; Steve D M Brown
Journal:  Genome Biol       Date:  2013-07-31       Impact factor: 13.583

Review 9.  The genomic and genetic toolbox of the teleost medaka (Oryzias latipes).

Authors:  Stephan Kirchmaier; Kiyoshi Naruse; Joachim Wittbrodt; Felix Loosli
Journal:  Genetics       Date:  2015-04       Impact factor: 4.562

10.  X. couchianus and X. hellerii genome models provide genomic variation insight among Xiphophorus species.

Authors:  Yingjia Shen; Domitille Chalopin; Tzintzuni Garcia; Mikki Boswell; William Boswell; Sergey A Shiryev; Richa Agarwala; Jean-Nicolas Volff; John H Postlethwait; Manfred Schartl; Patrick Minx; Wesley C Warren; Ronald B Walter
Journal:  BMC Genomics       Date:  2016-01-07       Impact factor: 3.969

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  6 in total

1.  Differences in susceptibility to Mycobacterium chelonae in zebrafish (Danio rerio) lines commonly used in scientific research.

Authors:  Andrew J Janik; Christopher M Whipps
Journal:  J Fish Dis       Date:  2021-12-14       Impact factor: 2.767

2.  Testing Alternative Surface Disinfection Agents for Zebrafish (Danio rerio) Embryos.

Authors:  Adrienne A Winn; Kevin A Prestia; Samantha M Peneyra
Journal:  J Am Assoc Lab Anim Sci       Date:  2021-08-20       Impact factor: 1.232

Review 3.  Translational relevance of forward genetic screens in animal models for the study of psychiatric disease.

Authors:  Eva Sheardown; Aleksandra M Mech; Maria Elena Miletto Petrazzini; Adele Leggieri; Agnieszka Gidziela; Saeedeh Hosseinian; Ian M Sealy; Jose V Torres-Perez; Elisabeth M Busch-Nentwich; Margherita Malanchini; Caroline H Brennan
Journal:  Neurosci Biobehav Rev       Date:  2022-02-04       Impact factor: 9.052

Review 4.  Specific Pathogen Free - A review of strategies in agriculture, aquaculture, and laboratory mammals and how they inform new recommendations for laboratory zebrafish.

Authors:  Katrina N Murray; Tannia S Clark; Myron J Kebus; Michael L Kent
Journal:  Res Vet Sci       Date:  2021-11-20       Impact factor: 2.554

5.  A Multi-Site Assessment of Anesthetic Overdose, Hypothermic Shock, and Electrical Stunning as Methods of Euthanasia for Zebrafish (Danio rerio) Embryos and Larvae.

Authors:  Jean-Philippe Mocho; Florian Lang; Guillaume Valentin; Sébastien Bedu; Robin McKimm; Juan Ramos; Yolanda Saavedra Torres; Sarah E Wheatley; Joseph Higgins; Mollie E Millington; Pia Rengtved Lundegaard; Rubén Chamorro Valverde; Vlasta Jenčič; Kristine von Krogh
Journal:  Biology (Basel)       Date:  2022-04-01

Review 6.  The Lymphatic System in Zebrafish Heart Development, Regeneration and Disease Modeling.

Authors:  Xidi Feng; Stanislao Travisano; Caroline A Pearson; Ching-Ling Lien; Michael R M Harrison
Journal:  J Cardiovasc Dev Dis       Date:  2021-02-19
  6 in total

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