在植物中使用碱基编辑的坚实基础

Q3 Agricultural and Biological Sciences Ecological genetics Pub Date : 2023-12-04 DOI:10.17816/ecogen567885
Maria A. Lebedeva, Oksana L. Razhina, Veronica V. Nikanorkina, V. Taranov
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引用次数: 0

摘要

CRISPR-Cas9基因组编辑系统最常见的应用是通过引入indel突变进行基因敲除。这是显而易见的,因为这种方法在指导RNA设计中具有最小的临界条件:可用的PAM序列和靶基因所有等位基因中保守的19-25个核苷酸。碱基编辑系统精确改变核苷酸有更多的局限性:目标核苷酸必须位于腺嘌呤或胞苷脱氨酶的编辑窗口,除此之外,编辑窗口中所有不需要的腺嘌呤或胞嘧啶都可能被改变。然而,还有一个更根本的问题——很难找到一种单一的氨基酸替代物,这种替代物可以改变蛋白质的特性。本文将考虑碱基编辑靶的一个很好的例子。烟草tabacumL。是茄科的一种植物,与土豆、番茄和辣椒一样。这些植物都受到马铃薯Y病毒(PVY)的强烈感染。众所周知,PVY通过病毒蛋白VPg招募宿主翻译起始因子eIF4E,从而开始合成其蛋白。如果eIF4E不能与VPg相互作用,植物就会产生抗性。在我们的工作中,我们在烟草eIF4E因子中建立了一个氨基酸替代,在酵母双杂交条件下,它破坏了与PVY VPg的相互作用,但不影响因子的功能。然后利用胞苷-脱氨酶系统设计了两种不同sgrna的基因结构,将该突变引入烟草植株。这些结构被用于转基因烟草植株的转化和发育。国家课题(0431-2022-0004)资助。
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The strong base for using base editing in plants
The most common application of CRISPR-Cas9 genome editing system is a gene knockout via indel mutations introducing. It is obvious, because this approach has minimum critical conditions in guide RNA design: available PAM sequence and conservative 19–25 nucleotides within all alleles of a target gene. Precise nucleotide changing with base editing systems has more limitations: target nucleotide should locate in editing window of adenine- or cytidine-deaminase, besides this, all undesired adenines or cytosines in editing window will be likely changed. However, there is a more fundamental issue — it is very difficult to find a single aminoacid substitution, which changes protein features in a desirable side. One of the good examples of base editing target will be considered in this work. Nicotiana tabacumL. is a plant fromSolanaceaefamily, the same as potato, tomato and pepper. All these plants are strongly affected by potato virus Y (PVY). It is known, that PVY recruits host translation initiation factor eIF4E by the viral protein VPg in order to start synthesis its proteins. If eIF4E can’t interact with VPg, plant will be resistant. In our work, we established an aminoacid substitution in tobacco eIF4E factor, which disrupted interaction with PVY VPg in yeast two-hybrid conditions, but didn’t influence the factor functionality. Then we designed two genetic constructions with different sgRNAs for introducing this mutation in tobacco plants using cytidine-deaminase system. These constructions were used to plant transformation and development of edited tobacco plants. This work is supported by State Task No. 0431-2022-0004.
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来源期刊
Ecological genetics
Ecological genetics Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
22
期刊介绍: The journal Ecological genetics is an international journal which accepts for consideration original manuscripts that reflect the results of field and experimental studies, and fundamental research of broad conceptual and/or comparative context corresponding to the profile of the Journal. Once a year, the editorial Board reviews and, if necessary, corrects the rules for authors and the journal rubrics.
期刊最新文献
CRISPR/Cas editing of a CPC gene in Arabidopsis thaliana Hairy roots biochemical characteristics of vegetable pea’s morphotype with modified leaf Erratum to “The strong base for using base editing in plants” (doi: 10.17816/ecogen567885) PCR-based genome walking methods (review) Ecological genetics. What is it? 20 years later
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