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使用预组装的Cas9核糖核蛋白进行双基因靶向,用于平菇的安全基因组编辑。

Double-gene targeting with preassembled Cas9 ribonucleoprotein for safe genome editing in the edible mushroom Pleurotus ostreatus.

作者信息

Boontawon Tatpong, Nakazawa Takehito, Choi Yeon-Jae, Ro Hyeon-Su, Oh Minji, Kawauchi Moriyuki, Sakamoto Masahiro, Honda Yoichi

机构信息

Graduate School of Agriculture, Kyoto University, Oiwakecho, Kitashirakawa, Sakyo-ku, Kyoto 606-8502, Japan.

Department of Biotechnology, Faculty of Science, Mahidol University, 272 Rama VI Road, Ratchathewi, Bangkok 10400, Thailand.

出版信息

FEMS Microbiol Lett. 2023 Jan 17;370. doi: 10.1093/femsle/fnad015.

Abstract

CRISPR/Cas9 has potential for efficient molecular breeding. Recently, a foreign-DNA-free gene-targeting technology was established by introducing a preassembled Cas9 ribonucleoprotein (RNP) complex into the oyster mushroom Pleurotus ostreatus. However, the target gene was restricted to such a gene like pyrG, since screening of a genome-edited strain was indispensable and could be performed via examination of 5-fluoroorotic acid (5-FOA) resistance caused by the disruption of the target gene. In this study, we simultaneously introduced the Cas9 RNP complex targeting fcy1, a mutation that conferred P. ostreatus resistance to 5-fluorocytosine (5-FC), together with that targeting pyrG. A total of 76 5-FOA resistant strains were isolated during the first screening. Subsequently, a 5-FC resistance examination was conducted, and three strains exhibited resistance. Genomic PCR experiments followed by DNA sequencing revealed that mutations were successfully introduced into fcy1 and pyrG in the three strains. The results indicated that double gene-edited mutants could be obtained in one experiment employing 5-FOA resistance screening for strains with Cas9 RNP incorporation. This work may pave the way for safe CRISPR/Cas9 technology to isolate mutant strains in any gene of interest without an ectopic marker gene.

摘要

CRISPR/Cas9在高效分子育种方面具有潜力。最近,通过将预组装的Cas9核糖核蛋白(RNP)复合物导入平菇中,建立了一种无外源DNA的基因靶向技术。然而,由于筛选基因组编辑菌株是必不可少的,且可以通过检测由靶基因破坏引起的5-氟乳清酸(5-FOA)抗性来进行,因此靶基因仅限于pyrG这样的基因。在本研究中,我们同时导入了靶向fcy1(一种赋予平菇对5-氟胞嘧啶(5-FC)抗性的突变)的Cas9 RNP复合物以及靶向pyrG的复合物。在首次筛选过程中,共分离出76株5-FOA抗性菌株。随后进行了5-FC抗性检测,有三株菌株表现出抗性。接着进行的基因组PCR实验和DNA测序表明,这三株菌株中的fcy1和pyrG成功引入了突变。结果表明,在采用5-FOA抗性筛选含Cas9 RNP菌株的一次实验中,可以获得双基因编辑突变体。这项工作可能为安全的CRISPR/Cas9技术铺平道路,以便在不使用异位标记基因的情况下分离任何感兴趣基因的突变菌株。

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