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

IF 2.2 4区 生物学 Q3 MICROBIOLOGY Fems Microbiology Letters Pub Date : 2023-01-17 DOI:10.1093/femsle/fnad015
Tatpong Boontawon, Takehito Nakazawa, Yeon-Jae Choi, Hyeon-Su Ro, Minji Oh, Moriyuki Kawauchi, Masahiro Sakamoto, Yoichi Honda
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引用次数: 1

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.

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预组装Cas9核糖核蛋白双基因靶向在食用菌平菇中的安全基因组编辑
CRISPR/Cas9具有高效分子育种的潜力。最近,通过将预组装的Cas9核糖核蛋白(RNP)复合物导入平菇Pleurotus ostreatus中,建立了一种无外源dna的基因靶向技术。然而,靶基因仅限于pyrG这样的基因,因为基因组编辑菌株的筛选是必不可少的,可以通过检测因靶基因破坏而引起的5-氟原酸(5-FOA)抗性来进行。在这项研究中,我们同时引入了靶向fcy1的Cas9 RNP复合物,fcy1是一种突变,使P. ostreatus对5-氟胞嘧啶(5-FC)具有抗性,同时靶向pyrG。首次筛选共分离到76株5-FOA耐药菌株。随后进行5-FC耐药性检测,3株菌株表现出耐药性。基因组PCR实验和DNA测序结果表明,突变成功导入了3株菌株的fcy1和pyrG中。结果表明,对含有Cas9 RNP的菌株进行5-FOA抗性筛选,一次可获得双基因编辑突变体。这项工作可能为安全的CRISPR/Cas9技术在没有异位标记基因的情况下分离任何感兴趣的基因突变株铺平道路。
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来源期刊
Fems Microbiology Letters
Fems Microbiology Letters 生物-微生物学
CiteScore
4.30
自引率
0.00%
发文量
112
审稿时长
1.9 months
期刊介绍: FEMS Microbiology Letters gives priority to concise papers that merit rapid publication by virtue of their originality, general interest and contribution to new developments in microbiology. All aspects of microbiology, including virology, are covered. 2019 Impact Factor: 1.987, Journal Citation Reports (Source Clarivate, 2020) Ranking: 98/135 (Microbiology) The journal is divided into eight Sections: Physiology and Biochemistry (including genetics, molecular biology and ‘omic’ studies) Food Microbiology (from food production and biotechnology to spoilage and food borne pathogens) Biotechnology and Synthetic Biology Pathogens and Pathogenicity (including medical, veterinary, plant and insect pathogens – particularly those relating to food security – with the exception of viruses) Environmental Microbiology (including ecophysiology, ecogenomics and meta-omic studies) Virology (viruses infecting any organism, including Bacteria and Archaea) Taxonomy and Systematics (for publication of novel taxa, taxonomic reclassifications and reviews of a taxonomic nature) Professional Development (including education, training, CPD, research assessment frameworks, research and publication metrics, best-practice, careers and history of microbiology) If you are unsure which Section is most appropriate for your manuscript, for example in the case of transdisciplinary studies, we recommend that you contact the Editor-In-Chief by email prior to submission. Our scope includes any type of microorganism - all members of the Bacteria and the Archaea and microbial members of the Eukarya (yeasts, filamentous fungi, microbial algae, protozoa, oomycetes, myxomycetes, etc.) as well as all viruses.
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