通过 5-氟乳清酸反选实现扁豆中的标记循环。

IF 2.2 4区 生物学 Q3 MICROBIOLOGY
Takuma Narutaki, Ayane Kamiya, Yuma Tsujimoto, Masataka Naruse, Shota Nishida, Moriyuki Kawauchi, Yoichi Honda, Hisatoshi Kamitsuji, Toshitsugu Sato, Takuya Sumita, Kosuke Izumitsu, Toshikazu Irie
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引用次数: 0

摘要

香菇(Lentinula edodes)含有多种有益化合物,具有多种显著特性。然而,由于基因修饰技术的发展滞后,有关其分子育种的报道很少。因此,本文从经过紫外线照射的菌株 M2 的原生质体中培育出菌株 UV30(PYRG-)。菌株 UV30 具有尿嘧啶异养性,菌株中 pyrG 编码的 5-磷酸鸟苷脱羧酶活性中心的苯丙氨酸残基被丝氨酸残基取代。接着,将由 ku80 上游序列、重复序列(ku80 下游序列的一部分)、PYRG 和 ku80 下游序列组成的循环标记引入菌株 UV30。结果,得到了用循环标记替换了 ku80 的原养菌株 ckp2-1。在完全培养基中培养后,将 ckp2-1 菌落边缘的菌丝接种到含有 5-FOA 的完全培养基中。结果获得了抗 5-FOA 菌株 KaM2,其中 pyrG 序列是通过同源重组从循环标记序列中拼接出来的。在这项研究中,我们首次开发出了用于多基因靶向的 L. edodes 标记循环系统。此外,所获得的 ∆ku80 株系可作为非同源末端连接缺陷株系,用于进一步的遗传操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Marker recycling in Lentinula edodes via 5-fluoroorotic acid counter-selection.

Shiitake (Lentinula edodes) contains various beneficial compounds and possesses several notable properties. However, there are few reports on its molecular breeding due to delay in development of its gene-modifying technology. Therefore, here, strain UV30 (pyrG -) was bred from the UV-irradiated protoplasts of strain M2. Strain UV30 was uracil-auxotrophic, and the phenylalanine residue in the active centre of orotidine-5-phosphate decarboxylase encoded by pyrG in the strain was substituted with a serine residue. Next, a recycling marker consisting of the upstream sequence of ku80, a repeat sequence (a portion of the downstream sequence of ku80), pyrG, and the downstream sequence of ku80 was introduced into the strain UV30. Consequently, the prototrophic strain ckp2-1, in which ku80 was replaced with the recycling marker, was obtained. After cultivation in complete medium, mycelia from the edges of ckp2-1 colonies were inoculated into a complete medium containing 5-Fluoroorotic acid (5-FOA). A 5-FOA-resistant strain KaM2, in which pyrG sequence was spliced from the recycling marker sequence via homologous recombination, was obtained. In this study, we developed the first marker recycling system for multigene targeting in L. edodes. Moreover, the resulting ∆ku80 strain may serve as a non-homologous end-joining deficient strain for further genetic manipulations.

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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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