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A simple and effective F0 knockout method for rapid screening of behaviour and other complex phenotypes

机译:一种简单有效的F0敲除用于快速筛选行为和其他复杂表型

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摘要

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.
机译:数百种人类基因与神经疾病有关,但翻译成易疏远的生物机制是滞后的。幼虫斑马鱼是一种有吸引力的模型,可以调查神经疾病的遗传贡献。然而,目前的CRISPR-CAS9方法难以应用于研究行为表型的大型遗传筛网。为了促进快速遗传筛查,我们开发了一种简单的无序工具,用于验证GRNA和高效的CRAP-CAS9方法,能够将> 90%的注射胚胎直接转化为F0双倍敲击。我们证明F0敲除可靠地重新延长复杂的突变表型,例如昼夜昼夜时钟的改变的分子节律,逃避对刺激物的反应以及多参数日夜运动行为。该技术足够稳健地敲除同一动物中的​​多个基因,例如以制造用于成像的透明三重敲除水晶鱼。我们的F0敲除方法将基因的实验时间从几个月到一周的斑马鱼中的行为表型。

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