Suppr超能文献

使用核糖核蛋白/纳米颗粒复合物进行交配型基因编辑的效果。

Effect of a Mating Type Gene Editing in Using RNP/Nanoparticle Complex.

作者信息

Kim Minseek, Oh Minji, Im Ji-Hoon, Lee Eun-Ji, Ryu Hojin, Ro Hyeon-Su, Oh Youn-Lee

机构信息

Mushroom Science Division, National Institute of Horticultural and Herbal Science, Rural Development Administration, Eumseong 27709, Republic of Korea.

Department of Biology, Chungbuk National University, Cheongju 28644, Republic of Korea.

出版信息

J Fungi (Basel). 2024 Dec 13;10(12):866. doi: 10.3390/jof10120866.

Abstract

Gene editing using CRISPR/Cas9 is an innovative tool for developing new mushroom strains, offering a promising alternative to traditional breeding methods that are time-consuming and labor-intensive. However, plasmid-based gene editing presents several challenges, including the need for selecting appropriate promoters for Cas9 expression, optimizing codons for the Cas9 gene, the unintended insertion of fragmented plasmid DNA into genomic DNA (gDNA), and regulatory concerns related to genetically modified organisms (GMOs). To address these issues, we utilized a Ribonucleoprotein (RNP) complex consisting of Cas9 and gRNA for gene editing to modify the A mating-type gene of . To overcome the challenges posed by the large size of the Cas9 protein, which limits its penetration through the protoplast membrane, and the susceptibility of sgRNA to degradation, we developed a nanoparticle complex using calcium phosphate and polyacrylic acid. This approach significantly improved gene editing efficiency. Consequently, we successfully edited the mating-controlling genes and in and examined the effects of their disruption on mating. Disruption of the gene, which is known to influence mycelial growth, did not significantly affect growth or mating. In contrast, editing the gene disrupted mating with compatible partners, highlighting its critical role in the mating process. The RNP-based transformation technology presented here offers significant advancement over traditional plasmid-based methods, enhancing the efficiency of targeted gene modification while avoiding the insertion of foreign genetic material, thereby mitigating GMO-related regulatory concerns.

摘要

使用CRISPR/Cas9进行基因编辑是开发新蘑菇菌株的一种创新工具,为耗时且费力的传统育种方法提供了一种有前景的替代方案。然而,基于质粒的基因编辑存在若干挑战,包括需要为Cas9表达选择合适的启动子、优化Cas9基因的密码子、将片段化的质粒DNA意外插入基因组DNA(gDNA)以及与转基因生物(GMO)相关的监管问题。为了解决这些问题,我们利用由Cas9和gRNA组成的核糖核蛋白(RNP)复合物进行基因编辑,以修饰[具体蘑菇名称]的A交配型基因。为了克服Cas9蛋白体积大限制其穿过原生质体膜以及sgRNA易降解所带来的挑战,我们使用磷酸钙和聚丙烯酸开发了一种纳米颗粒复合物。这种方法显著提高了基因编辑效率。因此,我们成功编辑了[具体蘑菇名称]中的交配控制基因[具体基因名称1]和[具体基因名称2],并研究了它们的破坏对交配的影响。已知影响菌丝体生长的[具体基因名称1]基因的破坏对生长或交配没有显著影响。相比之下,编辑[具体基因名称2]基因破坏了与兼容伙伴的交配,突出了其在交配过程中的关键作用。本文介绍的基于RNP的转化技术比传统的基于质粒的方法有显著进步,提高了靶向基因修饰的效率,同时避免了外源遗传物质的插入,从而减轻了与转基因生物相关的监管问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4843/11677008/abf5e6db3731/jof-10-00866-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验