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  5. A simple and effective F0 knockout method for rapid screening of behaviour and other complex phenotypes
 
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A simple and effective F0 knockout method for rapid screening of behaviour and other complex phenotypes
File(s)
elife-59683-v1.pdf (2.96 MB)
Published version
Author(s)
Kroll, François
Powell, Gareth T
Ghosh, Marcus
Gestri, Gaia
Antinucci, Paride
more
Type
Journal Article
Abstract
Hundreds of human genes are associated with neurological diseases, but translation into tractable biological mechanisms is lagging. Larval zebrafish are an attractive model to investigate genetic contributions to neurological diseases. However, current CRISPR-Cas9 methods are difficult to apply to large genetic screens studying behavioural phenotypes. To facilitate rapid genetic screening, we developed a simple sequencing-free tool to validate gRNAs and a highly effective CRISPR-Cas9 method capable of converting >90% of injected embryos directly into F0 biallelic knockouts. We demonstrate that F0 knockouts reliably recapitulate complex mutant phenotypes, such as altered molecular rhythms of the circadian clock, escape responses to irritants, and multi-parameter day-night locomotor behaviours. The technique is sufficiently robust to knockout multiple genes in the same animal, for example to create the transparent triple knockout crystal fish for imaging. Our F0 knockout method cuts the experimental time from gene to behavioural phenotype in zebrafish from months to one week.
Date Issued
2021-01-08
Date Acceptance
2020-12-14
Citation
eLife, 2021, 10
URI
http://hdl.handle.net/10044/1/90149
DOI
https://www.dx.doi.org/10.7554/eLife.59683
ISSN
2050-084X
Publisher
eLife Sciences Publications Ltd
Journal / Book Title
eLife
Volume
10
Copyright Statement
© Kroll et al. This article is distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source arecredited.
License URL
https://creativecommons.org/licenses/by/4.0/
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/33416493
PII: 59683
Subjects
CRISPR
G0
behaviour
circadian rhythm
genetics
genomics
knockout
neuroscience
sleep
zebrafish
Publication Status
Published
Coverage Spatial
England
Article Number
ARTN e59683
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