应用金门克隆法构建水稻CRISPR/Cas9结构

Q4 Agricultural and Biological Sciences
A. Yusof, A. Tamizi, Nurul Zim, Siti Sattar, M. Salleh, N. Azmi, Z. Zainal, Z. Zainuddin, N. Samsulrizal
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引用次数: 1

摘要

水稻(Oryza sativa)是世界上大多数人口消费的主食。然而,气候变化对我们的粮食安全造成了重大威胁,因为它对水稻生产造成了严重影响。基因组编辑技术的出现,开启了作物改良的新纪元。因此,本研究旨在构建水稻亚种耐旱性的CRISPR/Cas9构建。籼稻简历。IR64采用金门克隆法。为此,CRISPR/Cas9构建体的生成涉及到SUMO e2 - conjugated Enzyme (OsSCE1)基因的鉴定、单导RNA (single-guide RNA, sgRNA)设计和载体构建等几个阶段。FGENESH、genemark、InterProScan和Blast2GO程序用于OsSCE1基因的表征。从IR64中分离得到的OsSCE1基因经测序证实,该基因长585 bp,与水稻10号染色体上的OsSCE1基因同源性为99%。计算机分析得出结论,该基因参与非生物应激调节。在CCTop和Benchling等gRNA预测程序的帮助下,人工设计了20 bp的sgRNA。虚拟载体采用金门克隆方法进行验证,随后通过测序进行确认。组装包括包含OsSCE1 sgRNA序列、植物选择性标记和Cas9盒的独立载体,构建用于分层模块化克隆(MoClo)的标准化元件。该研究表明,我们的格式,作为基因插入是可以实现的,导致一个更快和更有效的组装过程,这可能有助于提高籼稻的耐旱性。进一步研究农杆菌介导的转化,可以确定敲除候选基因在提高玉米耐旱性方面的效果
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of CRISPR/Cas9 Construct in Rice (Oryza sativa subsp. indica) Using Golden Gate Cloning Method Towards Drought Tolerance
Rice (Oryza sativa) is a staple food consumed by the majority of the world’s population. Climate change, however, has created a significant threat to our food security as it posed severe effects on rice production. The emergence of genome editing technology has opened a new era in crop improvement. Hence, this study aims to develop the CRISPR/Cas9 construct of drought tolerance for O. sativa subsp. indica cv. IR64 using Golden Gate cloning method. For this purpose, the generation of CRISPR/Cas9 constructs involved several stages, i.e., characterization of SUMO E2-Conjugating Enzyme (OsSCE1) gene, single-guide RNA (sgRNA) design and vector construction. FGENESH, GeneMarkS, InterProScan, and Blast2GO programmes – were used for the OsSCE1 gene characterisation. The putative OsSCE1 gene isolated from IR64 was then verified by sequencing, and the gene was 585 bp long and showed 99% identity with O. sativa on chromosome 10. In silico analysis concluded the gene is involved in abiotic stress regulation. The 20 bp sgRNA was designed manually with the aid of gRNA prediction programmes including CCTop, and Benchling. The virtual vector was validated using the Golden Gate Cloning approach and later confirmed through sequencing. The assembly involved separate vectors containing the OsSCE1 sgRNA sequence, plant selectable marker, and Cas9 cassette to construct standardised elements for hierarchical modular cloning (MoClo). This study demonstrated that our format, as the gene insertion are achievable, resulting in a speedier and more efficient assembly process which may contribute to improve drought tolerance in indica rice. Further study on the Agrobacterium-mediated transformation using the developed construct may be conducted to determine the efficacy of knocking out candidate genes in improving drought tolerance ability O. sativa
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来源期刊
Journal of Tropical Life Science
Journal of Tropical Life Science Environmental Science-Ecology
CiteScore
1.00
自引率
0.00%
发文量
46
审稿时长
12 weeks
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