Institute of Marine Research, Bergen, Norway.
Transgenic Res. 2023 Dec;32(6):513-521. doi: 10.1007/s11248-023-00368-4. Epub 2023 Sep 21.
Genome editing using the CRISPR/Cas system offers the potential to enhance current breeding programs and introduce desirable genetic traits, including disease resistance, in salmon aquaculture. Several nucleases are available using this system, displaying differences regarding structure, cleavage, and PAM requirement. Cas9 is well established in Atlantic salmon, but Cas12a has yet to be tested in vivo in this species. In the present work, we microinjected salmon embryos with LbCas12a ribonucleoprotein complexes targeting the pigmentation gene solute carrier family 45 member 2 (slc45a2). Using CRISPR/LbCas12a, we were able to knock-out slc45a2 and knock-in a FLAG sequence element by providing single-stranded DNA templates. High-throughput sequencing revealed perfect HDR rates up to 34.3% and 54.9% in individual larvae using either target or non-target strand template design, respectively. In this work, we demonstrate the in vivo application of CRISPR/LbCas12a in Atlantic salmon, expanding the toolbox for editing the genome of this important aquaculture species.
使用 CRISPR/Cas 系统进行基因组编辑有可能增强当前的育种计划,并在鲑鱼养殖中引入理想的遗传特征,包括抗病性。该系统有几种核酸酶可供使用,它们在结构、切割和 PAM 要求方面存在差异。Cas9 在大西洋鲑鱼中已经得到很好的确立,但 Cas12a 尚未在该物种中进行体内测试。在本工作中,我们将靶向色素基因溶质载体家族 45 成员 2 (slc45a2) 的 LbCas12a 核糖核蛋白复合物微注射到鲑鱼胚胎中。使用 CRISPR/LbCas12a,我们能够通过提供单链 DNA 模板敲除 slc45a2 并敲入 FLAG 序列元件。高通量测序显示,使用目标或非目标链模板设计,在单个幼虫中分别获得了高达 34.3%和 54.9%的完美 HDR 率。在这项工作中,我们展示了 CRISPR/LbCas12a 在大西洋鲑鱼中的体内应用,扩展了编辑该重要水产养殖物种基因组的工具包。